EP2838902A1

Asymmetric syntheses for spiro-oxindole compounds useful as therapeutic agents

Abstract

This record has no abstract on file.

EP2838902A1, drawing sheet 1
Sheet 1 of 272

Term

6.5 yearsto projected expiry

Projected expiry 11 March 2033, counted from filing; an application has no term until it is granted.

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82 claims: 6 independent, 76 dependent

  1. 1
    Claims of equivalent WO 2013154712 A1 WHAT IS CLAIMED IS 1. A method of preparing a compound of formula (I):(I) as an isolated (S)-enantiomer, or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof;wherein: p and r are each independently 1 , 2, 3 or 4;R 1 is hydrogen, alkyl, alkenyl, alkynyl, haloalkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heterocyclyl, -R 8 -C(0)R 5 , -R 8 -C(0)OR 5 , -R 8 -C(0)N(R )R 5 , -S(0) 2 -R 5 , -R 9 -S(0) m -R 5 (where m is 0, 1 or 2), -R 8 -OR 5 , -R 8 -CN, -R 9 -P(0)(OR 5 ) 2 , or -R 9 -0-R 9 -OR 5 ;or R 1 is aralkyi substituted by -C(0)N(R 6 )R 7 where: R 6 is hydrogen, alkyl, aryl or aralkyi;and R 7 is hydrogen, alkyl, haloalkyl, -R 9 -CN, -R 9 -OR 5 , -R 9 -N(R 4 )R 5 , aryl, aralkyi, cycloalkyl, cycloalkylalkyl, heterocyclyl, heterocyclylalkyl, heteroaryl or heteroarylalkyl;or R e and R 7 , together with the nitrogen to which they are attached, form a /V-heterocyclyl or a /V-heteroaryl;and wherein each aryl, aralkyi, cycloalkyl, cycloalkylalkyl, heterocyclyl, heterocyclylalkyl, heteroaryl and heteroarylalkyl groups for R 6 and R 7 may be optionally substituted by one or more substituents selected from the group consisting of alkyl, cycloalkyl, aryl, aralkyi, halo, haloalkyl, -R 8 -CN, -R 8 -OR 5 , heterocyclyl and heteroaryl;or R 1 is aralkyi optionally substituted by one or more substituents selected from the group consisting of -R 8 -OR 5 , -C(0)OR 5 , halo, haloalkyl, alkyl, nitro, cyano, aryl, aralkyi, heterocyclyl and heteroaryl;or R 1 is -R 9 -N(R 10 )R 11 , -R 9 -N(R 12 )C(0)R 11 or -R 9 -N(R 10 )C(O)N(R 10 )R 11 where: each R 10 is hydrogen, alkyl, aryl, aralkyi or heteroaryl;each R 1 is hydrogen, alkyl, haloalkyi, cycloalkyi, cycloalkylalkyl, aryl, aralkyl, heterocyclyl, heterocyclylalkyi, heteroaryl, heteroarylalkyi, -R 9 -OC(0)R 5 , -R 9 -C(0)OR 5 , -R 9 -C(0)N(R 4 )R 5 , -R 9 -C(0)R 5 , -R 9 -N(R 4 )R 5 , -R 9 -OR 5 , or -R 9 -CN;and R 12 is hydrogen, alkyl, aryl, aralkyl or -C(0)R 5 ;and wherein each aryl, aralkyl, cycloalkyi, cycloalkylalkyl, heterocyclyl, heterocyclylalkyi, heteroaryl and heteroarylalkyi for R 10 and R 11 may be optionally substituted by one or more substituents selected from the group consisting of alkyl, cycloalkyi, aryl, aralkyl, halo, haloalkyi, nitro, -R 8 -CN, -R 8 -OR 5 , -R 8 -C(0)R 5 , heterocyclyl and heteroaryl;s heterocyclylalkyi or heteroarylalkyi where the heterocyclylalkyi or the heteroarylalkyi group is optionally substituted by one or more substituents selected from the group consisting of oxo, alkyl, halo, haloalkyi, cycloalkyi, cycloalkylalkyl, aryl, aralkyl, heterocyclyl, heterocyclylalkyi, heteroaryl, heteroarylalkyi, -R 8 -OR 5 , -R 8 -C(0)OR 5 , -R 8 -N(R 4 )R 5 , -R 8 -C(0)N(R 4 )R 5 , -R 8 -N(R 5 )C(0)R 4 , -R 8 -S(0) m R 4 (where m is 0, 1 or 2), -R 8 -CN, or -R 8 -N0 2 ;2 is independently selected from the group consisting of hydrogen, alkyl, alkenyl, alkynyl, alkoxy, halo, haloalkyi, haloalkenyl, haloalkoxy, cycloalkyi, cycloalkylalkyl, aryl, aralkyl, aralkenyl, heterocyclyl, heterocyclylalkyi, heteroaryl, heteroarylalkyi, -R 8 -CN, -R 8 -N0 2 , -R 8 -OR 6 , -R 8 -N(R )R 5 , -N=C(R 4 )R 5 , -S(0) m R 4 , -OS(0) 2 CF 3 , -R 8 -C(0)R 4 , -C(S)R 4 , -C(R ) 2 C(0)R 5 , -R 8 -C(0)OR 4 , -C(S)OR 4 , -R 8 -C(0)N(R 4 )R 5 , -C(S)N(R 4 )R 5 , -N(R 5 )C(0)R 4 , -N(R 5 )C(S)R 4 , -N(R 5 )C(0)OR 4 , -N(R 5 )C(S)OR 4 , -N(R 5 )C(0)N(R )R 5 , -N(R 5 )C(S)N(R )R 5 , -N(R 5 )S(0) n R 4 , -N(R 5 )S(0) n N(R 4 )R 5 , -R 8 -S(0) n N(R 4 )R 6 , -N(R 5 )C(=NR 5 )N(R 4 )R 5 , and -N(R 5 )C(=N-CN)N(R 4 )R 5 , wherein each m is independently 0, 1 , or 2 and each n is independently 1 or 2;and wherein each of the cycloalkyi, cycloalkylalkyl, aryl, aralkyl, aralkenyl, heterocyclyl, heterocyclylalkyi, heteroaryl and heteroarylalkyi groups for R 2 may be optionally substituted by one or more substituents selected from the group consisting of alkyl, alkenyl, alkynyl, alkoxy, halo, haloalkyi, haloalkenyl, haloalkoxy, cycloalkyi, cycloalkylalkyl, aryl, aralkyl, aralkenyl, heterocyclyl, heterocyclylalkyi, heteroaryl, heteroarylalkyi, -R 8 -CN, -R 8 -N0 2 , -R 8 -OR 5 , -R 8 -N(R 4 )R 5 , -S(0) m R 4 , -R 8 -S(0) n N(R 4 )R 5 , -R 8 -C(0)R 4 , -R 8 -C(0)OR 4 , -R 8 -C(0)N(R 4 )R 5 , -N(R 5 )C(0)R 4 , and -N(R 5 )S(0) n R 4 , wherein each m is independently 0, 1 , or 2 and each n is independently 1 or 2;or any two adjacent R 2 's, together with the adjacent carbon ring atoms to which they are directly attached, may form a fused ring selected from cycloalkyl, aryl, heterocyclyl and heteroaryl, and the other R 2 's, if present, are as defined above;each R 3 is independently selected from the group consisting of hydrogen, alkyl, alkenyl, alkynyl, alkoxy, halo, haloalkyl, haloalkenyl, haloalkoxy, cycloalkyl, cycloalkylalkyl, aryl, aralkyl, aralkenyl, heterocyclyl, heterocyclylalkyl, heteroaryl, heteroarylalkyl, -R 8 -CN, -R 8 -N0 2 , -R 8 -OR 5 , -R 8 -N(R 4 )R 5 , -N=C(R 4 )R 5 , -S(0) m R 4 , -OS(0) 2 CF 3 , -R 8 -C(0)R 4 , -C(S)R 4 , -C(R ) 2 C(0)R 5 , -R 8 -C(0)OR 4 , -C(S)OR 4 , -R 8 -C(0)N(R )R 5 , -C(S)N(R 4 )R 5 , -N(R 5 )C(0)R 4 , -N(R 5 )C(S)R 4 , -N(R 5 )C(0)OR 4 , -N(R 5 )C(S)OR 4 , -N(R 5 )C(0)N(R )R 5 , -N(R 5 )C(S)N(R )R 5 , -N(R 5 )S(0) n R 4 , -N(R 5 )S(0) n N(R 4 )R 5 , -R 8 -S(0) n N(R 4 )R 5 , -N(R 5 )C(=NR 5 )N(R )R 5 , and -N(R 5 )C(N=C(R 4 )R 5 )N(R 4 )R 5 , wherein each m is independently 0, 1 , or 2 and each n is independently 1 or 2;or any two adjacent R 3 's, together with the adjacent carbon ring atoms to which they are directly attached, may form a fused ring selected from cycloalkyl, heterocyclyl, aryl or heteroaryl, and the other R 3 's, if present, are as defined above;each R 4 and R 5 is independently selected from group consisting of hydrogen, alkyl, alkenyl, alkynyl, haloalkyl, alkoxyalkyl, cycloalkyl, cycloalkylalkyl, aryl, aralkyl, heterocyclyl, heterocyclylalkyl, heteroaryl, and heteroarylalkyl;or when R 4 and R 6 are each attached to the same nitrogen atom, then R 4 and R 5 , together with the nitrogen atom to which they are attached, may form a A/-heterocyclyl or a /V-heteroaryl;each R 8 is a direct bond or a straight or branched alkyiene chain, a straight or branched alkenylene chain or a straight or branched alkynylene chain;and each R 9 is a straight or branched alkyiene chain, a straight or branched alkenylene chain or a straight or branched alkynylene chain;wherein the method comprises treating a compound of formula (13): where p, r, R 1 , R 2 and R 3 are as defined above for the compound of formula (I), as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof, under suitable Mitsunobu reaction conditions to provide the compound of formula (I), as described above.
  2. 2
    The method of Claim 1 wherein the compound of formula (I) is a compound of formula (la):(la) where q is 1 or 2 and p, R 1 and R 2 are each as defined above in Claim 1 for the compounds of formula (I), as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  3. 3
    The method of Claim 2 wherein the compound of formula (la) is a compound of formula (Ia1):as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  4. 4
    The method of Claim 1 wherein the compound of formula (13) is a compound of formula (13a):(13a) where q is 1 or 2 and p, R and R 2 are each as defined above in Claim 1 for the compounds of formula (I), as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  5. 5
    The method of Claim 4 wherein the compound of formula (13a) is a compound of formula (13a1 ):as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  6. 6
    The method of Claim 1 further comprising a deprotection step prior to treating the compound of formula (13) under standard Mitsunobu reaction conditions, wherein the deprotection step comprises treating a compound of formula (12):(12) wherein p, r, R 1 , R 2 and R 3 are each as defined above in Claim 1 for the compounds of formula (I) and Pg 1 and Pg 2 are each independently an oxygen protecting group, as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof, under suitable deprotecting conditions to provide a compound of formula (13) as described above.
  7. 7
    The method of Claim 6 wherein the compound of formula (12) is a compound of formula (12a):(12a) where q is 1 or 2, Pg 1 and Pg 2 are each independently an oxygen protecting group and p, R 1 and R 2 are each as defined above in Claim 1 for the compounds of formula (I), as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  8. 8
    The method of Claim 7 wherein the compound of formula (I2a) is a compound of formula (12a1 ):where Pg 1 and Pg 2 are each independently an oxygen protecting group, as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  9. 9
    The method of Claim 6 further comprising a recrystallization step prior to treating the compound of formula (12) under suitable deprotecting conditions, wherein the recrystallization step comprises treating a compound of formula (1 1):(11 ) wherein p, r, R , R 2 and R 3 are each as defined above in Claim 1 for the compounds of formula (I) and Pg 1 and Pg 2 are each independently an oxygen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof, under suitable recrystallization conditions to provide a compound of formula (12), as described above.
  10. 10
    The method of Claim 9 wherein the compound of formula (11 ) is a compound of formula (1 1a):(11a) where q is 1 or 2, p, R 1 and R 2 are each as defined above in Claim 1 for the compounds of formula (I) and Pg 1 and Pg 2 are each independently an oxygen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof.
  11. 11
    The method of Claim 10 wherein the compound of formula (1 a) is a compound of formula (1 1 a1 ):where Pg 1 and Pg 2 are each independently an oxygen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof.
  12. 12
    The method of Claim 9 further comprising a C-alkylation step prior to treating a compound of formula (11 ) under suitable recrystallization conditions, wherein the C-alkylation step comprises treating a compound of formula (9):(9) where p, r, R 1 , R 2 and R 3 are each as defined above in Claim 1 for the compounds of formula (I) and Pg 1 is an oxygen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof, with a compound of formula (10): l 2 OCH 2 X (10) under suitable C-alkylation conditions comprising the presence of a phase transfer catalyst to provide a compound of formula (11), as described above.
  13. 13
    The method of Claim 12 wherein the compound of formula (9) is a compound of formula (9a):(9a) where q is 1 or 2, p, R 1 and R 2 are each as defined above in Claim 1 for the compounds of formula (I) and Pg 1 is an oxygen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof.
  14. 14
    The method of Claim 13 wherein the compound of formula (9a) is a compound of formula (9a1):where Pg 1 is an oxygen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof.
  15. 15
    The method of Claim 12 wherein the phase transfer catalyst is a quaternary ammonium salt of quinidine or a quaternary ammonium salt of cinchonine.
  16. 16
    The method of Claim 12 further comprising a dehydoxylation step prior to treating the compound of formula (9) with a compound of formula (10), wherein the dehydroxylation step comprises treating a compound of formula (8):(8) where p, r, R , R 2 and R 3 are each as defined above in Claim 1 for the compounds of formula (I) and Pg 1 is an oxygen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof, under suitable dehydroxylation conditions to provide a compound of formula (9), as described above.
  17. 17
    The method of Claim 16 wherein the compound of formula (8) is a compound of formula (8a):(8a) where q is 1 or 2, p, R 1 and R 2 are each as defined above in Claim 1 for the compounds of formula (I) and Pg 1 is an oxygen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof.
  18. 18
    The method of Claim 17 wherein the compound of formula (8a) is a compound of formula (8a1):where Pg 1 is an oxygen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof.
  19. 19
    The method of Claim 16 further comprising a protecting step prior to treating the compound of formula (8) under suitable dehydroxylation conditions, wherein the protecting step comprises treating a compound of formula (6):(6) where p, r, R 1 , R 2 and R 3 are each as defined above in Claim 1 for the compounds of formula (I), as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof, with a compound of formula (7): Pg (7) where X is halo and Pg 1 is an oxygen protecting group under suitable protecting conditions to provide a compound of formula (8), as described above.
  20. 20
    The method of Claim 19 wherein the compound of formula (6) is a compound of formula (6a):(6a) where q is 1 or 2 and p, R 1 and R 2 are each as defined above in Claim 1 for the compounds of formula (I), as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof.
  21. 21
    The method of Claim 20 wherein the compound of formula (6a) is a compound of formula (6a1):as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof.
  22. 22
    The method of Claim 19 further comprising a Grignard addition step prior to treating the compound of formula (6) with a compound of formula (7), wherein the Grignard addition step comprises the following substeps:(a) treating a compound of formula (4): (4) where r and R 3 are as described above for the compound of formula (I), with a Grignard reagent of formula (5): R gX (5) ;where X is iodo, bromo or chloro and R is alkyl, under suitable conditions to form an intermediate Grignard addition product;(b) treating a compound of formula (3): (3) where p, R 1 and R 2 are each as defined above in Claim 1 for the compounds of formula (I), or a pharmaceutically acceptable salt thereof, with the intermediate Grignard addition product formed in substep a) above under suitable Grignard reaction conditions to provide a compound of formula (6), as described above.
  23. 23
    The method of Claim 22 wherein the compound of formula (3) is a compound of formula (3a):where p, R 1 and R 2 are each as defined above in Claim 1 for the compounds of formula (I), or a pharmaceutically acceptable salt thereof.
  24. 24
    The method of Claim 23 wherein the compound of formula (3a) is a compound of formula (3a1 ):or a pharmaceutically acceptable salt thereof.
  25. 25
    The method of Claim 22 wherein the compound of formula (4) is a compound of formula (4a):(4a) where q is 1 or 2.
  26. 26
    The method of Claim 25 wherein the compound of formula (4a) is a compound of formula (4a1 ):(4a1)
  27. 27
    The method of Claim 22 further comprising a /V-alkylation step prior to treating a compound of formula (3) with the intermediate Grignard addition product, wherein the A -alkylation step comprises treating a compound of formula (1 ):where p and R 2 are each as defined above in Claim 1 for the compounds of formula (I), or a pharmaceutically acceptable salt thereof, with a compound of formula (2): X-R (2) where X is halo and R 1 is as defined above in Claim 1 for the compounds of formula (I), under suitable -alkylation conditions to provide a compound of formula (3), as described above.
  28. 28
    The method of Claim 27 wherein the compound of formula (1) is a compound of formula (1 a):(1a) or a pharmaceutically acceptable salt thereof.
  29. 29
    The method of Claim 27 wherein the compound of formula (2) is a compound of formula (2a):where X is halo.
  30. 30
    A method of preparing a compound of formula (I):as an isolated (S)-enantiomer, or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof;wherein: p and r are each independently 1 , 2, 3 or 4;R 1 is hydrogen, alkyl, alkenyl, alkynyl, haloalkyi, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heterocyclyl, -R 8 -C(0)R 5 , -R 8 -C(0)OR 5 , -R 8 -C(0)N(R 4 )R 6 , -S(0) 2 -R 5 , -R 9 -S(0) m -R 5 (where m is 0, 1 or 2), -R 8 -OR 5 , -R 8 -CN, -R 9 -P(0)(OR 5 ) 2 , or -R 9 -0-R 9 -OR 5 ;or R 1 is aralkyi substituted by -C(0)N(R 6 )R 7 where: R 6 is hydrogen, alkyl, aryl or aralkyi;and R 7 is hydrogen, alkyl, haloalkyi, -R 9 -CN, -R 9 -OR 5 , -R 9 -N(R 4 )R 5 , aryl, aralkyi, cycloalkyl, cycloalkylalkyl, heterocyclyl, heterocyclylalkyl, heteroaryl or heteroarylalkyl;or R 6 and R 7 , together with the nitrogen to which they are attached, form a /V-heterocyclyl or a /V-heteroaryl;and wherein each aryl, aralkyi, cycloalkyl, cycloalkylalkyl, heterocyclyl, heterocyclylalkyl, heteroaryl and heteroarylalkyl groups for R 6 and R 7 may be optionally substituted by one or more substituents selected from the group consisting of alkyl, cycloalkyl, aryl, aralkyi, halo, haloalkyi, -R 8 -CN, -R 8 -OR 5 , heterocyclyl and heteroaryl;or R 1 is aralkyi optionally substituted by one or more substituents selected from the group consisting of -R 8 -OR 5 , -C(0)OR 5 , halo, haloalkyi, alkyl, nitro, cyano, aryl, aralkyi, heterocyclyl and heteroaryl;or R 1 is -R 9 -N(R 10 )R 11 , -R 9 -N(R 12 )C(0)R 11 or -R 9 -N(R 10 )C(O)N(R 10 )R 11 where: each R 10 is hydrogen, alkyl, aryl, aralkyi or heteroaryl;each R 11 is hydrogen, alkyl, haloalkyi, cycloalkyl, cycloalkylalkyl, aryl, aralkyi, heterocyclyl, heterocyclylalkyl, heteroaryl, heteroarylalkyl, -R 9 -OC(0)R 5 , -R 9 -C(0)OR 6 , -R 9 -C(0)N(R 4 )R 5 , -R 9 -C(0)R 5 , -R 9 -N(R )R 5 , -R 9 -OR 5 , or -FT-CN;and R 12 is hydrogen, alkyl, aryl, aralkyl or -C(0)R 5 ;and wherein each aryl, aralkyl, cycloalkyi, cycloalkylalkyl, heterocyclyl, heterocyclylalkyi, heteroaryl and heteroarylalkyi for R 10 and R 11 may be optionally substituted by one or more substituents selected from the group consisting of alkyl, cycloalkyi, aryl, aralkyl, halo, haloaikyi, nitro, -R 8 -CN, -R 8 -OR 5 , -R 8 -C(0)R 5 , heterocyclyl and heteroaryl;or R 1 is heterocyclylalkyi or heteroarylalkyi where the heterocyclylalkyi or the heteroarylalkyi group is optionally substituted by one or more substituents selected from the group consisting of oxo, alkyl, halo, haloaikyi, cycloalkyi, cycloalkylalkyl, aryl, aralkyl, heterocyclyl, heterocyclylalkyi, heteroaryl, heteroarylalkyi, -R 8 -OR 5 , -R 8 -C(0)OR 5 , -R 8 -N(R 4 )R 5 , -R 8 -C(0)N(R 4 )R 5 , -R 8 -N(R 5 )C(0)R 4 , -R 8 -S(0) m R 4 (where m is 0, 1 or 2), -R 8 -CN, or -R 8 -N0 2 ;each R 2 is independently selected from the group consisting of hydrogen, alkyl, alkenyl, alkynyl, alkoxy, halo, haloaikyi, haloalkenyl, haloalkoxy, cycloalkyi, cycloalkylalkyl, aryl, aralkyl, aralkenyl, heterocyclyl, heterocyclylalkyi, heteroaryl, heteroarylalkyi, -R 8 -CN, -R 8 -N0 2 , -R 8 -OR 5 , -R 8 -N(R )R 5 , -N=C(R 4 )R 5 , -S(0) m R 4 , -OS(0) 2 CF 3 , -R 8 -C(0)R 4 , -C(S)R 4 , -C(R ) 2 C(0)R 5 , -R 8 -C(0)OR 4 , -C(S)OR 4 , -R 8 -C(0)N(R 4 )R 5 , -C(S)N(R )R 5 , -N(R 5 )C(0)R 4 , -N(R 5 )C(S)R 4 , -N(R 5 )C(0)OR 4 , -N(R 5 )C(S)OR 4 , -N(R 5 )C(0)N(R 4 )R 5 , -N(R 5 )C(S)N(R 4 )R 5 , -N(R s )S(0) n R 4 , -N(R 5 )S(0) n N(R 4 )R 5 , -R 8 -S(0) n N(R 4 )R 5 , -N(R 5 )C(=NR 5 )N(R 4 )R 5 , and -N(R 5 )C(=N-CN)N(R )R 5 , wherein each m is independently 0, 1 , or 2 and each n is independently 1 or 2;and wherein each of the cycloalkyi, cycloalkylalkyl, aryl, aralkyl, aralkenyl, heterocyclyl, heterocyclylalkyi, heteroaryl and heteroarylalkyi groups for R 2 may be optionally substituted by one or more substituents selected from the group consisting of alkyl, alkenyl, alkynyl, alkoxy, halo, haloaikyi, haloalkenyl, haloalkoxy, cycloalkyi, cycloalkylalkyl, aryl, aralkyl, aralkenyl, heterocyclyl, heterocyclylalkyi, heteroaryl, heteroarylalkyi, -R 8 -CN, -R 8 -N0 2 , -R 8 -OR 5 , -R 8 -N(R 4 )R 5 , -S(0) m R 4 , -R 8 -S(0) n N(R 4 )R 5 , -R 8 -C(0)R 4 , -R 8 -C(0)OR 4 , -R 8 -C(0)N(R 4 )R 5 , -N(R 5 )C(0)R 4 , and -N(R 5 )S(0) n R 4 , wherein each m is independently 0, 1 , or 2 and each n is independently 1 or 2;or any two adjacent R 2 's, together with the adjacent carbon ring atoms to which they are directly attached, may form a fused ring selected from cycloalkyi, aryl, heterocyclyl and heteroaryl, and the other R 2 's, if present, are as defined above;each R 3 is independently selected from the group consisting of hydrogen, alkyl, alkenyl, alkynyl, alkoxy, halo, haloalkyl, haloalkenyl, haloalkoxy, cycloalkyl, cycloalkylalkyl, aryl, aralkyl, aralkenyl, heterocyclyl, heterocyclylalkyl, heteroaryl, heteroarylalkyl, -R 8 -CN, -R 8 -N0 2 , -R 8 -OR 5 , -R 8 -N(R 4 )R 5 , -N=C(R 4 )R 5 , -S(0) m R 4 , -OS(0) 2 CF 3 , -R 8 -C(0)R 4 , -C(S)R 4 , -C(R 4 ) 2 C(0)R 5 , -R 8 -C(0)OR 4 , -C(S)OR 4 , -R 8 -C(0)N(R )R 5 , -C(S)N(R )R 5 , -N(R 5 )C(0)R 4 , -N(R 5 )C(S)R 4 , -N(R 5 )C(0)OR 4 , -N(R 5 )C(S)OR 4 , -N(R 5 )C(0)N(R 4 )R 5 , -N(R 5 )C(S)N(R 4 )R 5 , -N(R 5 )S(0) n R 4 , -N(R 5 )S(0) n N(R )R 5 , -R 8 -S(0) n N(R 4 )R 5 , -N(R 5 )C(=NR 5 )N(R 4 )R 5 , and -N(R 6 )C(N=C(R 4 )R 5 )N(R 4 )R 5 , wherein each m is independently 0, 1 , or 2 and each n is independently 1 or 2;or any two adjacent R 3 's, together with the adjacent carbon ring atoms to which they are directly attached, may form a fused ring selected from cycloalkyl, heterocyclyl, aryl or heteroaryl, and the other R 3, s, if present, are as defined above;each R 4 and R 6 is independently selected from group consisting of hydrogen, alkyl, alkenyl, alkynyl, haloalkyl, alkoxyalkyl, cycloalkyl, cycloalkylalkyl, aryl, aralkyl, heterocyclyl, heterocyclylalkyl, heteroaryl, and heteroarylalkyl;or when R 4 and R 5 are each attached to the same nitrogen atom, then R 4 and R 5 , together with the nitrogen atom to which they are attached, may form a /V-heterocyclyl or a /V-heteroaryl;each R 8 is a direct bond or a straight or branched alkylene chain, a straight or branched alkenylene chain or a straight or branched alkynylene chain;and each R 9 is a straight or branched alkylene chain, a straight or branched alkenylene chain or a straight or branched alkynylene chain;wherein the method comprises the following steps: (a) treating a compound of formula (1 ): (1 ) where p and R 2 are as described above for the compound of formula (I), or a pharmaceutically acceptable salt thereof, with a compound of formula (2): X-R (2) ;where R 1 is as defined above for the compound of formula (I) and X is halo, under suitable /V-alkylation conditions to provide a compound of formula (3): (3) where p, R 1 and R 2 are as described above for the compound of formula (I), or a pharmaceutically acceptable salt thereof;treating a compound of formula (3) under suitable Grignard reaction conditions with an intermediate Grignard addition product formed from the treatment of a compound of formula (4): (4) where r and R 3 are as defined above for the compound of formula (I), with a Grignard reagent of formula (5): RMgX (5) where R is alkyl and X is iodo, bromo or chloro, under suitable conditions to form a compound of formula (6): (6) where p, r, R 1 , R 2 and R 3 are as defined above for the compound of formula (I), as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof;treating a compound of formula (6) with a compound of formula (7);Pg 1 (7) where X is halo and Pg 1 is an oxygen protecting group under suitable protecting conditions to provide a compound of formula (8): (8) where p, r, R 1 , R 2 and R 3 are as defined above for the compound of formula (I) and Pg 1 is an oxygen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof;treating a compound of formula (8) under suitable dehydroxylation conditions to provide a compound of formula (9): (9) where p, r, R 1 , R 2 and R 3 are as defined above for the compound of formula (I) and Pg 1 is an oxygen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof;treating a compound of formula (9) with a compound of formula (10): Pg 2 OCH 2 X (10) where Pg 2 is an oxygen protecting group and X is halo, under suitable C-alkylation conditions comprising the presence of a phase transfer catalyst to provide a compound of formula (11): where p, r, R 1 , R 2 and R 3 are each as defined above for the compound of formula (I) and Pg 1 and Pg 2 are each independently an oxygen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof;treating a compound of formula (11) under suitable recrystaliization conditions to provide a compound of formula (12): (12) where p, r, R 1 , R 2 and R 3 are as defined above for the compounds of formula (I) and Pg 1 and Pg 2 are each independent an oxygen protecting group, as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof;treating a compound of formula (12) under suitable deprotecting conditions to provide a compound of formula (13): (13) where p, r, R 1 , R 2 and R 3 are as defined above for the compounds of formula (I), as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof;treating a compound of formula (13) under suitable Mitsunobu reaction conditions to provide the compound of formula (I), as defined above, as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  31. 31
    A compound of formula (11):(11) wherein: p and r are each independently 1 , 2, 3 or 4;Pg 1 and Pg 2 are each independently an oxgyen protecting group;R is hydrogen, alkyl, aikenyl, alkynyl, haloalkyi, aryl, cycloalkyi, cycloalkylalkyl, heteroaryl, heterocyclyl, -R 8 -C(0)R 5 , -R 8 -C(0)OR 5 , -R 8 -C(0)N(R 4 )R 5 , -S(0) 2 -R 5 , -R 9 -S(0) m -R 5 (where m is 0, 1 or 2), -R 8 -OR 5 , -R 8 -CN, -R 9 -P(0)(OR 5 ) 2 , or -R 9 -0-R 9 -OR 5 ;or R 1 is aralkyi substituted by -C(0)N(R 6 )R 7 where: R 6 is hydrogen, alkyl, aryl or aralkyi;and R 7 is hydrogen, alkyl, haloalkyi, -R 9 -CN, -R 9 -OR 5 , -R 9 -N(R 4 )R 6 , aryl, aralkyi, cycloalkyi, cycloalkylalkyl, heterocyclyl, heterocyclylalkyl, heteroaryl or heteroarylalkyl;or R 6 and R 7 , together with the nitrogen to which they are attached, form a /V-heterocyclyl or a N-heteroaryl;and wherein each aryl, aralkyi, cycloalkyi, cycloalkylalkyl, heterocyclyl, heterocyclylalkyl, heteroaryl and heteroarylalkyl groups for R 6 and R 7 may be optionally substituted by one or more substituents selected from the group consisting of alkyl, cycloalkyi, aryl, aralkyi, halo, haloalkyi, -R 8 -CN, -R 8 -OR 5 , heterocyclyl and heteroaryl;or R 1 is independently aralkyi optionally substituted by one or more substituents selected from the group consisting of -R 8 -OR 5 , -C(0)OR 5 , halo, haloalkyi, alkyl, nitro, cyano, aryl, araikyl, heterocyclyl and heteroaryl;or R 1 is independently -R 9 -N(R 10 )R 11 , -R 9 -N(R 12 )C(0)R 11 or -R 9 -N(R 10 )C(O)N(R 10 )R 11 where: each R 0 is hydrogen, alkyl, aryl, araikyl or heteroaryl;each R 1 is hydrogen, alkyl, haloalkyl, cycloalkyl, cycloalkylalkyl, aryl, araikyl, heterocyclyl, heterocyclylalkyl, heteroaryl, heteroarylalkyl, -R 9 -OC(0)R 5 , -R 9 -C(0)OR 5 , -R 9 -C(0)N(R )R 5 , -R 9 -C(0)R 5 , -R 9 -N(R 4 )R 5 , -R 9 -OR s , or -R 9 -CN;and R 12 is hydrogen, alkyl, aryl, araikyl or -C(0)R 5 ;and wherein each aryl, araikyl, cycloalkyl, cycloalkylalkyl, heterocyclyl, heterocyclylalkyl, heteroaryl and heteroarylalkyl for R 10 and R may be optionally substituted by one or more substituents selected from the group consisting of alkyl, cycloalkyl, aryl, araikyl, halo, haloalkyl, nitro, -R 8 -CN, -R 8 -OR 5 , -R 8 -C(0)R 5 , heterocyclyl and heteroaryl;or R 1 is independently heterocyclylalkyl or heteroarylalkyl where the heterocyclylalkyl or the heteroarylalkyl group is optionally substituted by one or more substituents selected from the group consisting of oxo, alkyl, halo, haloalkyl, cycloalkyl, cycloalkylalkyl, aryl, araikyl, heterocyclyl, heterocyclylalkyl, heteroaryl, heteroarylalkyl, -R 8 -OR 5 , -R 8 -C(0)OR 5 , -R 8 -N(R 4 )R 5 , -R 8 -C(0)N(R )R 5 , -R 8 -N(R 5 )C(0)R 4 , -R 8 -S(0) m R 4 (where m is 0, 1 or 2), -R 8 -CN, or -R 8 -N0 2 ;each R 2 is independently selected from the group consisting of hydrogen, alkyl, alkenyl, alkynyl, alkoxy, halo, haloalkyl, haloalkenyl, haloalkoxy, cycloalkyl, cycloalkylalkyl, aryl, araikyl, aralkenyl, heterocyclyl, heterocyclylalkyl, heteroaryl, heteroarylalkyl, -R 8 -CN, -R 8 -N0 2 , -R 8 -OR 5 , -R 8 -N(R 4 )R 5 , -N=C(R 4 )R 5 , -S(0) m R 4 , -OS(0) 2 CF 3 , -R 8 -C(0)R 4 , -C(S)R 4 , -C(R 4 ) 2 C(0)R 5 , -R 8 -C(0)OR 4 , -C(S)OR 4 , -R 8 -C(0)N(R 4 )R 5 , -C(S)N(R )R 5 , -N(R 5 )C(0)R 4 , -N(R 5 )C(S)R 4 , -N(R 5 )C(0)OR 4 , -N(R 5 )C(S)OR 4 , -N(R 5 )C(0)N(R 4 )R 5 , -N(R 5 )C(S)N(R )R 5 , -N(R 5 )S(0) n R 4 , -N(R 5 )S(0) n N(R 4 )R 5 , -R 8 -S(0) n N(R 4 )R 5 , -N(R 5 )C(=NR 5 )N(R )R 5 , and -N(R 5 )C(=N-CN)N(R 4 )R 5 , wherein each m is independently 0, 1 , or 2 and each n is independently 1 or 2;and wherein each of the cycloalkyl, cycloalkylalkyl, aryl, araikyl, aralkenyl, heterocyclyl, heterocyclylalkyl, heteroaryl and heteroarylalkyl groups for R 2 may be optionally substituted by one or more substituents selected from the group consisting of alkyl, alkenyl, alkynyl, alkoxy, halo, haloalkyl, haloalkenyl, haloalkoxy, cycloalkyl, cycloalkylalkyl, aryl, aralkyl, aralkenyl, heterocyclyl, heterocyclylalkyl, heteroaryl, heteroaryialkyl, -R 8 -CN, -R 8 -N0 2 , -R 8 -OR 5 , -R 8 -N(R 4 )R 5 , -S(0) m R 4 , -R 8 -S(0) n N(R 4 )R 5 , -R 8 -C(0)R 4 , -R 8 -C(0)OR 4 , -R 8 -C(0)N(R )R 5 , -N(R 5 )C(0)R 4 , and -N(R 5 )S(0) n R 4 , wherein each m is independently 0, 1 , or 2 and each n is independently 1 or 2;or any two adjacent R 2 's, together with the adjacent carbon ring atoms to which they are directly attached, may form a fused ring selected from cycloalkyl, aryl, heterocyclyl and heteroaryl, and the other R 2 's, if present, are as defined above;each R 3 is independently selected from the group consisting of hydrogen, alkyl, alkenyl, alkynyl, alkoxy, halo, haloalkyl, haloalkenyl, haloalkoxy, cycloalkyl, cycloalkylalkyl, aryl, aralkyl, aralkenyl, heterocyclyl, heterocyclylalkyl, heteroaryl, heteroaryialkyl, -R 8 -CN, -R 8 -N0 2 , -R 8 -OR 5 , -R 8 -N(R 4 )R 5 , -N=C(R )R 5 , -S(0) m R 4 , -OS(0) 2 CF 3 , -R 8 -C(0)R 4 , -C(S)R 4 , -C(R ) 2 C(0)R 5 , -R 8 -C(0)OR 4 , -C(S)OR 4 , -R 8 -C(0)N(R 4 )R 5 , -C(S)N(R 4 )R 5 , -N(R 5 )C(0)R 4 , -N(R 5 )C(S)R 4 , -N(R 5 )C(0)OR 4 , -N(R 5 )C(S)OR 4 , -N(R 5 )C(0)N(R )R 5 , -N(R 5 )C(S)N(R 4 )R 5 , -N(R 5 )S(0) n R 4 , -N(R 5 )S(0) n N(R )R 5 , -R 8 -S(0) n N(R )R 5 , -N(R 5 )C(=NR 5 )N(R 4 )R 5 , and -N(R 5 )C(N=C(R 4 )R 5 )N(R 4 )R 5 , wherein each m is independently 0, 1 , or 2 and each n is independently 1 or 2;or any two adjacent R 3 's, together with the adjacent carbon ring atoms to which they are directly attached, may form a fused ring selected from cycloalkyl, heterocyclyl, aryl or heteroaryl, and the other R 3 's, if present, are as defined above;each R 4 and R 5 is independently selected from group consisting of hydrogen, alkyl, alkenyl, alkynyl, haloalkyl, alkoxyalkyl, cycloalkyl, cycloalkylalkyl, aryl, aralkyl, heterocyclyl, heterocyclylalkyl, heteroaryl, and heteroaryialkyl;or when R 4 and R 5 are each attached to the same nitrogen atom, then R 4 and R 5 , together with the nitrogen atom to which they are attached, may form a /V-heterocyclyl or a A/-heteroaryl;each R 8 is a direct bond or a straight or branched alkylene chain, a straight or branched alkenylene chain or a straight or branched alkynylene chain;and each R 9 is a straight or branched alkylene chain, a straight or branched alkenylene chain or a straight or branched alkynylene chain;as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof.
  32. 32
    The compound Claim 31 having the following formula (1 1 a):(11a) where q is 1 or 2, p, R 1 and R 2 are each as defined above in Claim 30 and Pg 1 and Pg 2 are each independently an oxygen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof. The compound of Claim 32 having the following formula (1 1 a1 ) where Pg 1 and Pg 2 are each independently an oxygen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof. wherein: each p and r are independently 1 , 2, 3 or 4;each Pg 1 and Pg 2 is independently an oxgyen protecting group;each R 1 is independently hydrogen, alkyl, alkenyl, alkynyl, haloalkyi, aryl, cycloalkyi, cycloalkylalkyl, heteroaryl, heterocyclyl, -R 8 -C(0)R 5 , -R 8 -C(0)OR 5 , -R 8 -C(0)N(R 4 )R 5 , -S(0) 2 -R 5 , -R 9 -S(0) m -R 5 (where m is 0, 1 or 2), -R 8 -OR 5 , -R 8 -CN, -R 9 -P(0)(OR 6 ) 2 , or -R 9 -0-R 9 -OR 5 ;or each R 1 is independently aralkyi substituted by -C(0)N(R 6 )R 7 where: R 6 is hydrogen, alkyl, aryl or aralkyi;and R 7 is hydrogen, alkyl, haloalkyi, -R 9 -CN, -R 9 -OR 5 , -R 9 -N(R )R 5 , aryl, aralkyi, cycloalkyi, cycloalkylalkyl, heterocyclyl, heterocyclylalkyi, heteroaryl or heteroarylalkyi;or R 6 and R 7 , together with the nitrogen to which they are attached, form a /V-heterocyclyl or a ΛΖ-heteroaryl;and wherein each aryl, aralkyi, cycloalkyi, cycloalkylalkyl, heterocyclyl, heterocyclylalkyi, heteroaryl and heteroarylalkyi groups for R 6 and R 7 may be optionally substituted by one or more substituents selected from the group consisting of alkyl, cycloalkyi, aryl, aralkyi, halo, haloalkyi, -R 8 -CN, -R 8 -OR 5 , heterocyclyl and heteroaryl;or each R 1 is independently aralkyi optionally substituted by one or more substituents selected from the group consisting of -R 8 -OR 5 , -C(0)OR 5 , halo, haloalkyi, alkyl, nitro, cyano, aryl, aralkyi, heterocyclyl and heteroaryl;or each R 1 is independently -R 9 -N(R 10 )R 11 , -R 9 -N(R 12 )C(0)R 11 or -R 9 -N(R 10 )C(O)N(R 0 )R 11 where: each R 10 is hydrogen, alkyl, aryl, aralkyi or heteroaryl;each R is hydrogen, alkyl, haloalkyi, cycloalkyi, cycloalkylalkyl, aryl, aralkyi, heterocyclyl, heterocyclylalkyi, heteroaryl, heteroarylalkyi, -R 9 -OC(0)R 5 , -R 9 -C(0)OR 5 , -R 9 -C(0)N(R 4 )R 5 , -R 9 -C(0)R 5 , -R 9 -N(R 4 )R 5 , -R 9 -OR 5 , or -R 9 -CN;and R 12 is hydrogen, alkyl, aryl, aralkyi or -C(0)R 5 ;and wherein each aryl, aralkyi, cycloalkyi, cycloalkylalkyl, heterocyclyl, heterocyclylalkyi, heteroaryl and heteroarylalkyi for R 10 and R 11 may be optionally substituted by one or more substituents selected from the group consisting of alkyl, cycloalkyi, aryl, aralkyi, halo, haloalkyi, nitro, -R 8 -CN, -R 8 -OR 5 , -R 8 -C(0)R 5 , heterocyclyl and heteroaryl;or each R 1 is independently heterocyclylalkyi or heteroarylalkyi where the heterocyclylalkyi or the heteroarylalkyi group is optionally substituted by one or more substituents selected from the group consisting of oxo, alkyl, halo, haloalkyi, cycloalkyi, cycloalkylalkyi, aryl, araikyi, heterocyclyl, heterocyclylalkyi, heteroaryl, heteroarylalkyl, -R 8 -OR 5 , -R 8 -C(0)OR 5 , -R 8 -N(R 4 )R 5 , -R 8 -C(0)N(R 4 )R 5 , -R 8 -N(R 5 )C(0)R 4 , -R 8 -S(0) m R 4 (where m is 0, 1 or 2), -R 8 -CN, or -R 8 -N0 2 ;each R 2 is independently selected from the group consisting of hydrogen, alkyl, alkenyl, alkynyl, alkoxy, halo, haloalkyi, haloalkenyl, haloalkoxy, cycloalkyi, cycloalkylalkyi, aryl, araikyi, aralkenyl, heterocyclyl, heterocyclylalkyi, heteroaryl, heteroarylalkyl, -R 8 -CN, -R 8 -N0 2 , -R 8 -OR 5 , -R 8 -N(R 4 )R 5 , -N=C(R 4 )R 5 , -S(0) m R 4 , -OS(0) 2 CF 3 , -R 8 -C(0)R 4 , -C(S)R 4 , -C(R ) 2 C(0)R 5 , -R 8 -C(0)OR 4 , -C(S)OR 4 , -R 8 -C(0)N(R )R 5 , -C(S)N(R 4 )R 5 , -N(R 5 )C(0)R 4 , -N(R 5 )C(S)R 4 , -N(R 5 )C(0)OR 4 , -N(R 5 )C(S)OR 4 , -N(R 5 )C(0)N(R )R 5 , -N(R 5 )C(S)N(R )R 5 , -N(R 6 )S(0) n R 4 , -N(R 5 )S(0) n N(R )R 5 , -R 8 -S(0) n N(R 4 )R 5 , -N(R 5 )C(=NR 5 )N(R 4 )R 5 , and -N(R 5 )C(=N-CN)N(R 4 )R 5 , wherein each m is independently 0, 1 , or 2 and each n is independently 1 or 2;and wherein each of the cycloalkyi, cycloalkylalkyi, aryl, araikyi, aralkenyl, heterocyclyl, heterocyclylalkyi, heteroaryl and heteroarylalkyl groups for R 2 may be optionally substituted by one or more substituents selected from the group consisting of alkyl, alkenyl, alkynyl, alkoxy, halo, haloalkyi, haloalkenyl, haloalkoxy, cycloalkyi, cycloalkylalkyi, aryl, araikyi, aralkenyl, heterocyclyl, heterocyclylalkyi, heteroaryl, heteroarylalkyl, -R 8 -CN, -R 8 -N0 2 , -R 8 -OR 5 , -R 8 -N(R 4 )R 5 , -S(0) m R 4 , -R 8 -S(0) n N(R )R 5 , -R 8 -C(0)R 4 , -R 8 -C(0)OR 4 -R 8 -C(0)N(R 4 )R 5 , -N(R 5 )C(0)R 4 , and -N(R 5 )S(0) n R 4 , wherein each m is independently 0, 1 , or 2 and each n is independently 1 or 2;or any two adjacent R 2 's, together with the adjacent carbon ring atoms to which they are directly attached, may form a fused ring selected from cycloalkyi, aryl, heterocyclyl and heteroaryl, and the other R 2 's, if present, are as defined above;each R 3 is independently selected from the group consisting of hydrogen, alkyl, alkenyl, alkynyl, alkoxy, halo, haloalkyi, haloalkenyl, haloalkoxy, cycloalkyi, cycloalkylalkyi, aryl, araikyi, aralkenyl, heterocyclyl, heterocyclylalkyi, heteroaryl, heteroarylalkyl, -R 8 -CN, -R 8 -N0 2 , -R 8 -OR 5 , -R 8 -N(R )R 5 , -N=C(R 4 )R 5 , -S(0) m R 4 , -OS(0) 2 CF 3 , -R 8 -C(0)R 4 , -C(S)R 4 , -C(R 4 ) 2 C(0)R 5 , -R 8 -C(0)OR 4 , -C(S)OR 4 , -R 8 -C(0)N(R 4 )R 5 , -C(S)N(R 4 )R 5 , -N(R 5 )C(0)R 4 , -N(R 5 )C(S)R 4 , -N(R 5 )C(0)OR 4 , -N(R 5 )C(S)OR 4 , -N(R 5 )C(0)N(R 4 )R 5 , -N(R 5 )C(S)N(R 4 )R 5 , -N(R 5 )S(0) n R 4 , -N(R 6 )S(0) n N(R 4 )R 6 , -R 8 -S(0) n N(R )R 5 , -N(R 5 )C(=NR 5 )N(R )R 5 , and -N(R 5 )C(N=C(R )R 5 )N(R 4 )R 5 , wherein each m is independently 0, 1 , or 2 and each n is independently 1 or 2;or any two adjacent R 3 's, together with the adjacent carbon ring atoms to which they are directly attached, may form a fused ring selected from cycloalkyl, heterocyclyl, aryl or heteroaryl, and the other R 3 's, if present, are as defined above;each R 4 and R 5 is independently selected from group consisting of hydrogen, alkyl, alkenyl, alkynyl, haloalkyl, alkoxyalkyl, cycloalkyl, cycloalkylaikyl, aryl, aralkyl, heterocyclyl, heterocyclylalkyl, heteroaryl, and heteroarylalkyl;or when R 4 and R 5 are each attached to the same nitrogen atom, then R 4 and R 5 , together with the nitrogen atom to which they are attached, may form a /V-heterocyclyl or a /V-heteroaryl;each R 8 is a direct bond or a straight or branched alkylene chain, a straight or branched alkenylene chain or a straight or branched alkynylene chain;and each R 9 is a straight or branched alkylene chain, a straight or branched alkenylene chain or a straight or branched alkynylene chain;as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  33. 33
    35. The compound Claim 34 having the following formula (12a):(12a) where q is 1 or 2, Pg 1 and Pg 2 are each independently an oxygen protecting group and p, R 1 and R 2 are each as defined above in Claim 34, as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)- enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof. The compound of Claim 35 having the following formula (12a1): where Pg 1 and Pg 2 are each independently an oxygen protecting group, as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  34. 34
    37. The compound Claim 34 having the following formula (13a):(13a) where q is 1 or 2 and p, R 1 and R 2 are each as defined above in Claim 34, as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  35. 35
    38. The compound of Claim 37 having the following formula (13a1):as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  36. 36
    39. A method of preparing a compound of formula (I):(I) as an isolated (S)-enantiomer, or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof;p and r are each independently 1 , 2, 3 or 4;R 1 is hydrogen, alkyl, alkenyl, alkynyl, haloalkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heterocyclyl, -R 8 -C(0)R 5 , -R 8 -C(0)OR 5 , -R 8 -C(0)N(R 4 )R 5 , -S(0) 2 -R 5 , -R 9 -S(0) m -R 5 (where m is 0, 1 or 2), -R 8 -OR 5 , -R 8 -CN, -R 9 -P(0)(OR 5 ) 2 , or -R 9 -0-R 9 -OR 5 ;or R 1 is aralkyi substituted by -C(0)N(R 6 )R 7 where: R 6 is hydrogen, alkyl, aryl or aralkyi;and R 7 is hydrogen, alkyl, haloalkyl, -R 9 -CN, -R 9 -OR 5 , -R 9 -N(R 4 )R 5 , aryl, aralkyi, cycloalkyl, cycloalkylalkyl, heterocyclyl, heterocyclylalkyl, heteroaryl or heteroarylalkyl;or R 6 and R 7 , together with the nitrogen to which they are attached, form a /V-heterocyclyl or a /V-heteroaryl;and wherein each aryl, aralkyi, cycloalkyl, cycloalkylalkyl, heterocyclyl, heterocyclylalkyl, heteroaryl and heteroarylalkyl groups for R 6 and R 7 may be optionally substituted by one or more substituents selected from the group consisting of alkyl, cycloalkyl, aryl, aralkyi, halo, haloalkyl, -R 8 -CN, -R 8 -OR 5 , heterocyclyl and heteroaryl;or R is aralkyi optionally substituted by one or more substituents selected from the group consisting of -R 8 -OR 5 , -C(0)OR 5 , halo, haloalkyl, alkyl, nitro, cyano, aryl, aralkyi, heterocyclyl and heteroaryl;or R is -R 9 -N(R 0 )R 11 , -R 9 -N(R 12 )C(0)R 11 or -R 9 -N(R 10 )C(O)N(R 0 )R 11 where: each R 10 is hydrogen, alkyl, aryl, aralkyi or heteroaryl;each R 11 is hydrogen, alkyl, haloalkyl, cycloalkyl, cycloalkylalkyl, aryl, aralkyi, heterocyclyl, heterocyclylalkyl, heteroaryl, heteroarylalkyl, -R 9 -0C(O)R 5 , -R 9 -C(0)OR 5 , -R 9 -C(0)N(R 4 )R 5 , -R 9 -C(0)R 5 , -R 9 -N(R )R 5 , -R 9 -OR 5 , or -R 9 -CN;and R 2 is hydrogen, alkyl, aryl, aralkyl or -C(0)R 5 ;and wherein each aryl, aralkyl, cycloalkyi, cycloalkylalkyl, heterocyclyl, heterocyclyialkyi, heteroaryl and heteroarylalkyi for R 10 and R 11 may be optionally substituted by one or more substituents selected from the group consisting of alkyl, cycloalkyi, aryl, aralkyl, halo, haloalkyi, nitro, -R 8 -CN, -R 8 -OR 5 , -R 8 -C(0)R 6 , heterocyclyl and heteroaryl;or R 1 is heterocyclyialkyi or heteroarylalkyi where the heterocyclyialkyi or the heteroarylalkyi group is optionally substituted by one or more substituents selected from the group consisting of oxo, alkyl, halo, haloalkyi, cycloalkyi, cycloalkylalkyl, aryl, aralkyl, heterocyclyl, heterocyclyialkyi, heteroaryl, heteroarylalkyi, -R 8 -OR 5 , -R 8 -C(0)OR 5 , -R 8 -N(R )R 5 , -R 8 -C(0)N(R 4 )R 5 , -R 8 -N(R 5 )C(0)R 4 , -R 8 -S(0) m R 4 (where m is 0, 1 or 2), -R 8 -CN, or -R 8 -N0 2 ;each R 2 is independently selected from the group consisting of hydrogen, alkyl, alkenyl, alkynyl, alkoxy, halo, haloalkyi, haloalkenyl, haloalkoxy, cycloalkyi, cycloalkylalkyl, aryl, aralkyl, aralkenyl, heterocyclyl, heterocyclyialkyi, heteroaryl, heteroarylalkyi, -R 8 -CN, -R 8 -N0 2 , -R 8 -OR 5 , -R 8 -N(R 4 )R 5 , -N=C(R 4 )R 5 , -S(0) m R 4 , -OS(0) 2 CF 3 , -R 8 -C(0)R 4 , -C(S)R 4 , -C(R ) 2 C(0)R 5 , -R 8 -C(0)OR 4 , -C(S)OR 4 , -R 8 -C(0)N(R 4 )R 5 , -C(S)N(R 4 )R 5 , -N(R 5 )C(0)R 4 , -N(R 5 )C(S)R 4 , -N(R 5 )C(0)OR 4 , -N(R 5 )C(S)OR 4 , -N(R 5 )C(0)N(R )R 5 , -N(R 5 )C(S)N(R )R 5 , -N(R 5 )S(0) n R 4 , -N(R 5 )S(0) n N(R 4 )R 5 , -R 8 -S(0) n N(R 4 )R 5 , -N(R 5 )C(=NR 5 )N(R )R 5 , and -N(R 5 )C(=N-CN)N(R )R 6 , wherein each m is independently 0, 1 , or 2 and each n is independently 1 or 2;and wherein each of the cycloalkyi, cycloalkylalkyl, aryl, aralkyl, aralkenyl, heterocyclyl, heterocyclyialkyi, heteroaryl and heteroarylalkyi groups for R 2 may be optionally substituted by one or more substituents selected from the group consisting of alkyl, alkenyl, alkynyl, alkoxy, halo, haloalkyi, haloalkenyl, haloalkoxy, cycloalkyi, cycloalkylalkyl, aryl, aralkyl, aralkenyl, heterocyclyl, heterocyclyialkyi, heteroaryl, heteroarylalkyi, -R 8 -CN, -R 8 -N0 2 , -R 8 -OR 5 , -R 8 -N(R 4 )R 5 , -S(0) m R 4 , -R 8 -S(0) n N(R 4 )R 5 , -R 8 -C(0)R 4 , -R 8 -C(0)OR 4 , -R 8 -C(0)N(R )R 5 , -N(R 5 )C(0)R 4 , and -N(R 5 )S(0) n R 4 , wherein each m is independently 0, 1 , or 2 and each n is independently 1 or 2;or any two adjacent R 2 's, together with the adjacent carbon ring atoms to which they are directly attached, may form a fused ring selected from cycloalkyi, aryl, heterocyclyl and heteroaryl, and the other R 2 's, if present, are as defined above;each R 3 is independently selected from the group consisting of hydrogen, alkyl, alkenyl, alkynyl, alkoxy, halo, haloalkyl, haloalkenyl, haloalkoxy, cycloalkyl, cycloalkylalkyl, aryl, aralkyl, aralkenyl, heterocyclyl, heterocyclylalkyl, heteroaryl, heteroarylalkyl, -R 8 -CN, -R 8 -N0 2 , -R 8 -OR 5 , -R 8 -N(R 4 )R 5 , -N=C(R )R 5 , -S(0) m R 4 , -OS(0) 2 CF 3 , -R 8 -C(0)R 4 , -C(S)R 4 , -C(R 4 ) 2 C(0)R 5 , -R 8 -C(0)OR 4 , -C(S)OR 4 , -R 8 -C(0)N(R 4 )R 5 , -C(S)N(R 4 )R 5 , -N(R 5 )C(0)R 4 , -N(R 5 )C(S)R 4 , -N(R 5 )C(0)OR 4 , -N(R 6 )C(S)OR 4 , -N(R 5 )C(0)N(R 4 )R 5 , -N(R 5 )C(S)N(R 4 )R 5 , -N(R 5 )S(0) n R 4 , -N(R 5 )S(0) n N(R 4 )R 5 , -R 8 -S(0) n N(R )R 5 , -N(R 5 )C(=NR 5 )N(R 4 )R 5 , and -N(R 5 )C(N=C(R 4 )R 5 )N(R )R 5 , wherein each m is independently 0, 1 , or 2 and each n is independently 1 or 2;or any two adjacent R 3 's, together with the adjacent carbon ring atoms to which they are directly attached, may form a fused ring selected from cycloalkyl, heterocyclyl, aryl or heteroaryl, and the other R 3 's, if present, are as defined above;each R 4 and R 5 is independently selected from group consisting of hydrogen, alkyl, alkenyl, alkynyl, haloalkyl, alkoxyalkyl, cycloalkyl, cycloalkylalkyl, aryl, aralkyl, heterocyclyl, heterocyclylalkyl, heteroaryl, and heteroarylalkyl;or when R 4 and R 5 are each attached to the same nitrogen atom, then R 4 and R 5 , together with the nitrogen atom to which they are attached, may form a AZ-heterocyclyl or a A/-heteroaryl;each R 8 is a direct bond or a straight or branched alkylene chain, a straight or branched alkenylene chain or a straight or branched alkynylene chain;and each R 9 is a straight or branched alkylene chain, a straight or branched alkenylene chain or a straight or branched alkynylene chain;wherein the method comprises treating a compound of formula (22): (22) where p, r, R 2 and R 3 are each as described above for the compound of formula (I), as an isolated (S)-enantiomer, or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof, with a compound of formula (2): X-R (2) where X is halo and R 1 is as described above for the compound of formula (I), or a pharmaceutically acceptable salt thereof, under suitable /V-alkyiation conditions to provide a compound of formula (I), as described above.
  37. 37
    40. The method of Claim 39 wherein the compound of formula (I) is a compound of formula (la):(la) where q is 1 or 2 and p, R 1 and R 2 are each as defined in Claim 39 for the compounds of formula (I), as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  38. 38
    41. The method of Claim 40 wherein the compound of formula (la) is a compound of formula (Ia1):as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  39. 39
    42. The method of Claim 40 wherein the compound of formula (la) is a compound of formula (Ia2):as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  40. 40
    43. The method of Claim 39 wherein the compound of formula (2) is a compound of formula (2a):(2a) where X is halo.
  41. 41
    44. The method of Claim 39 wherein the compound of formula (2) is a compound of formula (2b):(2b) where X is halo.
  42. 42
    45. The method of Claim 39 wherein the compound of formula (22) is a compound of formula (22a):(22a) where q is 1 or 2 and p and R 2 are are each as defined in Claim 39 for the compounds of formula (I), as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  43. 43
    46. The method of Claim 45 wherein the compound of formula (22a) is a compound of formula (22a1):as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  44. 44
    47. The method of Claim 45 wherein the compound of formula (22a) is a compound of formula (22a2):as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  45. 45
    48. The method of Claim 39 further comprising a deprotection step prior to the treatment of the compound of formula (22) with the compound of formula (2), wherein the deprotection step comprises treating a compound of formula (21):(21 ) where p, r, R 2 and R 3 are each as defined in Claim 39 for the compounds of formula (I), and Pg 3 is a nitrogen protecting group, as an isolated (S)-enantiomer, or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof, under suitable nitrogen deprotection conditions to provide a compound of formula (22), as described above.
  46. 46
    49. The method of Claim 48 wherein the compound of formula (21) is a compound of formula (21a):(21a) where q is 1 or 2, p and R 2 are each as defined in Claim 39 for the compounds of formula (I) and Pg 3 is a nitrogen protecting group, as an isolated (S)-enantiomer, or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)- enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  47. 47
    50. The method of Claim 49 wherein the compound of formula (21a) is a compound of formula (21 a1):(21 a1 ) where Pg 3 is an nitrogen protecting group, as an isolated (S)-enantiomer, or a non- racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  48. 48
    51. The method of Claim 49 wherein the compound of formula (21a) is a compound of formula (21a2):(21 a2) where Pg 3 is an nitrogen protecting group, as an isolated (S)-enantiomer, or a non- racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  49. 49
    52. The method of Claim 48 further comprising an intramolecular cyclization step prior to the deprotection of the compound of formula (21), wherein the intramolecular cyclization step comprises treating a compound of formula (20):where p, r, R 2 and R 3 are each as defined in Claim 39 for the compounds of formula (I), and Pg 3 is a nitrogen protecting group, as an isolated (S)-enantiomer, or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof, under suitable Mitsunobu reaction conditions, to provide the compound of formula (21), as described above.
  50. 50
    53. The method of Claim 52 wherein the compound of formula (20) is a compound of formula (20a):(20a) where q is 1 or 2, p and R 2 are each as defined in Claim 39 for the compounds of formula (I) and Pg 3 is a nitrogen protecting group, as an isolated (S)-enantiomer, or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)- enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  51. 51
    54. The method of Claim 53 wherein the compound of formula (20a) is a compound of formula (20a1):(20a1 ) where Pg 3 is a nitrogen protecting group, as an isolated (S)-enantiomer, or a non- racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  52. 52
    55. The method of Claim 53 wherein the compound of formula (20a) is a compound of formula (20a2):(20a2) where Pg 3 is a nitrogen protecting group, as an isolated (S)-enantiomer, or a non- racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  53. 53
    56. The method of Claim 52 further comprising a deprotection step prior to treatment of the compound of formula (20) under standard Mitsunobu reaction conditions, wherein the deprotection step comprises treating a compound of formula (19):where p, r, R 2 and R 3 are each as defined in Claim 39 for the compounds of formula (I), Pg 1 and Pg 2 are each independently an oxygen protecting group and Pg 3 is a nitrogen protecting group, as an isolated (S)-enantiomer, or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof, under suitable deprotection conditions to provide a compound of formula (20), as described above.
  54. 54
    57. The method of Claim 56 wherein the compound of formula (19) is a compound of formula (19a):(19a) where q is 1 or 2, p and R 2 are each as defined in Claim 39 for the compounds of formula (I), Pg 1 and Pg 2 are each independently an oxygen protecting group and Pg 3 is a nitrogen protecting group, as an isolated (S)-enantiomer, or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  55. 55
    58. The method of Claim 57 wherein the compound of formula (19a) is a compound of formula (19a1):(19a1) where Pg 1 and Pg 2 are each independently an oxygen protecting group and Pg 3 is a nitrogen protecting group, as an isolated (S)-enantiomer, or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  56. 56
    59. The method of Claim 57 wherein the compound of formula (19a) is a compound of formula (19a2):(19a2) where Pg 1 and Pg 2 are each independently an oxygen protecting group and Pg 3 is a nitrogen protecting group, as an isolated (S)-enantiomer, or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  57. 57
    60. The method of Claim 56 further comprising a C-alkylation step prior to the deprotection of the compound of formula (19), wherein the step comprises treating a compound of formula (18):(18) where p, r, R 2 and R 3 are each as defined in Claim 39 for the compounds of formula (I), Pg 1 is an oxygen protecting group and Pg 3 is a nitrogen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof, with a compound of formula (10): Pg 2 OCH 2 X (10) where X is halo and Pg 2 is an oxygen protecting group, under suitable C-alkylation conditions comprising the presence of a phase transfer catalyst to provide a compound of formula (19), as described above.
  58. 58
    61. The method of Claim 60 wherein the compound of formula (18) is a compound of formula (18a):(18a) where q is 1 or 2, p and R 2 are each as defined in Claim 39 for the compounds of formula (I), Pg 1 is an oxygen protecting group and Pg 3 is a nitrogen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof.
  59. 59
    62. The method of Claim 61 wherein the compound of formula (18a) is a compound of formula (18a1 ):(18a1) where Pg 1 is an oxygen protecting group and Pg 3 is a nitrogen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof.
  60. 60
    63. The method of Claim 61 wherein the compound of formula (18a) is a compound of formula (18a2):(18a2) where Pg 1 is an oxygen protecting group and Pg 3 is a nitrogen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof.
  61. 61
    64. The method of Claim 60 wherein the phase transfer catalyst is a quaternary ammonium salt of quinidine or a quaternary ammonium salt of cinchonine.
  62. 62
    65. The method of Claim 60 further comprising a dehydroxylation step prior to the treatment of the compound of formula (18) with a compound of formula (10), wherein the dehydroxylation step comprises treating a compound of formula (17):(17) where p, r, R 2 and R 3 are each as defined in Claim 39 for the compounds of formula (I), Pg 1 is an oxygen protecting group and Pg 3 is a nitrogen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof, under suitable dehydroxylation conditions to provide a compound of formula (18), as described above.
  63. 63
    66. The method of Claim 65 wherein the compound of formula (17) is a compound of formula (17a):(17a) where q is 1 or 2, p and R 2 are each as defined in Claim 39 for the compounds of formula (I), Pg 1 is an oxygen protecting group and Pg 3 is a nitrogen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof.
  64. 64
    67. The method of Claim 66 wherein the compound of formula (17a) is a compound of formula (17a1):(17a1) where Pg 1 is an oxygen protecting group and Pg 3 is a nitrogen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof.
  65. 65
    68. The method of Claim 66 wherein the compound of formula (17a) is a compound of formula (17a2):(17a2) . where Pg 1 is an oxygen protecting group and Pg 3 is a nitrogen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof.
  66. 66
    69. The method of Claim 65 further comprising a protecting step prior to treating a compound of formula (17) under suitable dehydroxylation conditions, wherein the protecting step comprises treating a compound of formula (16):where p, r, R and R 3 are each as defined in Claim 39 for the compounds of formula (I) and Pg 3 is a nitrogen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof, with a compound of formula (7): Pg 1 X (7) ■ where X is halo and Pg 1 is an oxygen protecting group under suitable protecting conditions to provide a compound of formula (17), as described above.
  67. 67
    70. The method of Claim 69 wherein the compound of formula (16) is a compound of formula (16a):(16a) where q is 1 or 2, p and R 2 are each as defined in Claim 39 for the compounds of formula (I) and Pg 3 is a nitrogen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof.
  68. 68
    71. The method of Claim 70 wherein the compound of formula (16a) is a compound of formula (16a1):(16a1 ) where Pg 3 is a nitrogen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof.
  69. 69
    72. The method of Claim 70 wherein the compound of formula (16a) is a compound of formula (16a2):(16a2) where Pg 3 is a nitrogen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof.
  70. 70
    73. The method of Claim 69 further comprising a Grignard addition step prior to treating the compound of formula (16) with a compound of formula (7), wherein the Grignard addition step comprises the following substeps:(a) treating a compound of formula (4): (4) where r and R 3 are as described above for the compound of formula (I), with a Grignard reagent of formula (5): RMgX (5) ;where X is iodo, bromo or chloro and R is alkyl, under suitable conditions to form an intermediate Grignard addition product;(b) treating a compound of formula (15): where p and R 2 are as described above for the compound of formula (I), and Pg 3 is a nitrogen protecting group, or a pharmaceutically acceptable salt thereof, with the intermediate Grignard addition product formed in substep a) above under suitable Grignard reaction conditions to provide a compound of formula (16), as described above.
  71. 71
    74. The method of Claim 73 wherein the compound of formula (15) is a compound of formula (15a):(15a) ■ where p and R 2 are each as defined in Claim 39 for the compounds of formula (I) and Pg 3 is a nitrogen protecting group, or a pharmaceutically acceptable salt thereof.
  72. 72
    75. The method of Claim 73 wherein the compound of formula (4) is a compound of formula (4a):(4a) where q is 1 or 2.
  73. 73
    76. The method of Claim 75 wherein the compound of formula (4a) is a compound of formula (4a1 ):(4a1)
  74. 74
    77. The method of Claim 75 wherein the compound of formula (4a) is a compound of formula (4a2):(4a2)
  75. 75
    78. The method of Claim 73 further comprising a protecting step prior to the treatment of the compound of formula (15) with the Grignard addition product, wherein the protecting step comprises treating a compound of formula (1 ):(1 ) where p and R 2 are as defined above for the compound of formula (I), or a pharmaceutically acceptable salt thereof, with a compound of formula (14): X-Pg 3 (14) . where X is halo and Pg 3 is a nitrogen protecting group, under suitable nitrogen protecting conditions to provide a compound of formula (15), as described above.
  76. 76
    79. The method of Claim 78 wherein the compound of formula (1) is a compound of formula (1 a):(1a) where p and R 2 are each as defined in Claim 39 for the compounds of formula (I), or a pharmaceutically acceptable salt thereof.
  77. 77
    80. A method of preparing a compound of formula (I):(I) as an isolated (S)-enantiomer, or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof;wherein: p and r are each independently 1 , 2, 3 or 4;R 1 is hydrogen, alkyl, alkenyl, alkynyl, haloalkyl, aryl, cycloalkyl, cycloalkylalkyl, heteroaryl, heterocyclyl, -R 8 -C(0)R 5 , -R 8 -C(0)OR 5 , -R 8 -C(0)N(R 4 )R 5 , -S(0) 2 -R 5 , -R 9 -S(0) m -R 5 (where m is 0, 1 or 2), -R 8 -OR 5 , -R 8 -CN, -R 9 -P(0)(OR 6 ) 2 , or -R 9 -0-R 9 -OR 5 ;or R 1 is aralkyl substituted by -C(0)N(R 6 )R 7 where: R 6 is hydrogen, alkyl, aryl or aralkyl;and R 7 is hydrogen, alkyl, haloalkyl, -R 9 -CN, -R 9 -OR 5 , -R 9 -N(R 4 )R 5 , aryl, aralkyl, cycloalkyl, cycloalkylalkyl, heterocyclyl, heterocyclylalkyl, heteroaryl or heteroarylalkyl;or R 6 and R 7 , together with the nitrogen to which they are attached, form a AZ-heterocyclyl or a /\/-heteroaryl;and wherein each aryl, aralkyi, cycloalkyl, cycloalkylalkyl, heterocyclyl, heterocyclylalkyi, heteroaryl and heteroarylalkyi groups for R 6 and R 7 may be optionally substituted by one or more substituents selected from the group consisting of alkyl, cycloalkyl, aryl, aralkyi, halo, haloalkyl, -R 8 -CN, -R 8 -OR 5 , heterocyclyl and heteroaryl;or R is aralkyi optionally substituted by one or more substituents selected from the group consisting of -R 8 -OR 5 , -C(0)OR 5 , halo, haloalkyl, alkyl, nitro, cyano, aryl, aralkyi, heterocyclyl and heteroaryl;or R 1 is -R 9 -N(R 10 )R 11 , -R 9 -N(R 12 )C(0)R 11 or -R 9 -N(R 0 )C(O)N(R 0 )R 11 where: each R 10 is hydrogen, alkyl, aryl, aralkyi or heteroaryl;each R 11 is hydrogen, alkyl, haloalkyl, cycloalkyl, cycloalkylalkyl, aryl, aralkyi, heterocyclyl, heterocyclylalkyi, heteroaryl, heteroarylalkyi, -R 9 -OC(0)R 5 , -R 9 -C(0)OR 5 , -R 9 -C(0)N(R 4 )R 5 , -R 9 -C(0)R 5 , -R 9 -N(R 4 )R 5 , -R 9 -OR 5 , or -R 9 -CN;and R 12 is hydrogen, alkyl, aryl, aralkyi or -C(0)R 5 ;and wherein each aryl, aralkyi, cycloalkyl, cycloalkylalkyl, heterocyclyl, heterocyclylalkyi, heteroaryl and heteroarylalkyi for R 10 and R 11 may be optionally substituted by one or more substituents selected from the group consisting of alkyl, cycloalkyl, aryl, aralkyi, halo, haloalkyl, nitro, -R 8 -CN, -R 8 -OR 5 , -R 8 -C(0)R 5 , heterocyclyl and heteroaryl;or R 1 is heterocyclylalkyi or heteroarylalkyi where the heterocyclylalkyi or the heteroarylalkyi group is optionally substituted by one or more substituents selected from the group consisting of oxo, alkyl, halo, haloalkyl, cycloalkyl, cycloalkylalkyl, aryl, aralkyi, heterocyclyl, heterocyclylalkyi, heteroaryl, heteroarylalkyi, -R 8 -OR 5 , -R 8 -C(0)OR 5 , -R 8 -N(R )R 5 , -R 8 -C(0)N(R )R 5 , -R 8 -N(R 5 )C(0)R 4 , -R 8 -S(0) m R 4 (where m is 0, 1 or 2), -R 8 -CN, or -R 8 -N0 2 ;each R 2 is independently selected from the group consisting of hydrogen, alkyl, alkenyl, alkynyl, alkoxy, halo, haloalkyl, haloalkenyl, haloalkoxy, cycloalkyl, cycloalkylalkyl, aryl, aralkyi, aralkenyl, heterocyclyl, heterocyclylalkyi, heteroaryl, heteroarylalkyi, -R 8 -CN, -R 8 -N0 2 , -R 8 -OR 5 , -R 8 -N(R )R 5 , -N=C(R )R 6 , -S(0) m R 4 , -OS(0) 2 CF 3 , -R 8 -C(0)R 4 , -C(S)R 4 , -C(R 4 ) 2 C(0)R 5 , -R 8 -C(0)OR 4 , -C(S)OR 4 , -R 8 -C(0)N(R )R 5 , -C(S)N(R )R 5 , -N(R 5 )C(0)R 4 , -N(R 5 )C(S)R 4 , -N(R 5 )C(0)OR 4 , -N(R 5 )C(S)OR 4 , -N(R 5 )C(0)N(R 4 )R 5 , -N(R 5 )C(S)N(R )R 5 , -N(R 5 )S(0) n R 4 , -N(R 5 )S(0) n N(R )R 5 , -R 8 -S(0) n N(R 4 )R 5 , -N(R 5 )C(=NR 5 )N(R )R 5 , and -N(R 5 )C(=N-CN)N(R 4 )R 5 , wherein each m is independently 0, 1 , or 2 and each n is independently 1 or 2;and wherein each of the cycloalkyl, cycloalkylalkyl, aryl, aralkyl, aralkenyl, heterocyclyl, heterocyclylalkyl, heteroaryl and heteroarylalkyl groups for R 2 may be optionally substituted by one or more substituents selected from the group consisting of alkyl, alkenyl, alkynyl, alkoxy, halo, haloalkyl, haloalkenyl, haloalkoxy, cycloalkyl, cycloalkylalkyl, aryl, aralkyl, aralkenyl, heterocyclyl, heterocyclylalkyl, heteroaryl, heteroarylalkyl, -R 8 -CN, -R 8 -N0 2 , -R 8 -OR 5 , -R 8 -N(R 4 )R 5 , -S(0) m R 4 , -R 8 -S(0) n N(R )R 5 , -R 8 -C(0)R 4 , -R 8 -C(0)OR 4 , -R 8 -C(0)N(R )R 5 , -N(R 5 )C(0)R 4 , and -N(R 5 )S(0) n R 4 , wherein each m is independently 0, 1 , or 2 and each n is independently 1 or 2;or any two adjacent R 2 's, together with the adjacent carbon ring atoms to which they are directly attached, may form a fused ring selected from cycloalkyl, aryl, heterocyclyl and heteroaryl, and the other R 2 's, if present, are as defined above;each R 3 is independently selected from the group consisting of hydrogen, alkyl, alkenyl, alkynyl, alkoxy, halo, haloalkyl, haloalkenyl, haloalkoxy, cycloalkyl, cycloalkylalkyl, aryl, aralkyl, aralkenyl, heterocyclyl, heterocyclylalkyl, heteroaryl, heteroarylalkyl, -R 8 -CN, -R 8 -N0 2 , -R 8 -OR 6 , -R 8 -N(R 4 )R 5 , -N=C(R 4 )R 5 , -S(0) m R 4 , -OS(0) 2 CF 3 , -R 8 -C(0)R 4 , -C(S)R 4 , -C(R ) 2 C(0)R 6 , -R 8 -C(0)OR 4 , -C(S)OR 4 , -R 8 -C(0)N(R 4 )R 5 , -C(S)N(R )R 5 , -N(R 6 )C(0)R 4 , -N(R 5 )C(S)R 4 , -N(R 5 )C(0)OR 4 , -N(R 5 )C(S)OR 4 , -N(R 5 )C(0)N(R 4 )R 5 , -N(R 5 )C(S)N(R 4 )R 5 , -N(R 5 )S(0) n R 4 , -N(R 5 )S(0) n N(R )R 5 , -R 8 -S(0) n N(R 4 )R 5 , -N(R 5 )C(=NR 5 )N(R )R 5 , and -N(R 5 )C(N=C(R 4 )R 5 )N(R )R 5 , wherein each m is independently 0, 1 , or 2 and each n is independently 1 or 2;or any two adjacent R 3 's, together with the adjacent carbon ring atoms to which they are directly attached, may form a fused ring selected from cycloalkyl, heterocyclyl, aryl or heteroaryl, and the other R 3 's, if present, are as defined above;each R 4 and R 5 is independently selected from group consisting of hydrogen, alkyl, alkenyl, alkynyl, haloalkyl, alkoxyalkyl, cycloalkyl, cycloalkylalkyl, aryl, aralkyl, heterocyclyl, heterocyclylalkyl, heteroaryl, and heteroarylalkyl;or when R 4 and R 5 are each attached to the same nitrogen atom, then R 4 and R 5 , together with the nitrogen atom to which they are attached, may form a /V-heterocyclyl or a /V-heteroaryl;each R 8 is a direct bond or a straight or branched alkylene chain, a straight or branched alkenylene chain or a straight or branched alkynylene chain;and each R 9 is a straight or branched alkylene chain, a straight or branched alkenylene chain or a straight or branched alkynylene chain;wherein the method comprises the following steps: (a) treating a compound of formula (1): where p and R 2 are each as defined above for the compound of formula (I), or a pharmaceutically acceptable salt thereof, with a compound of formula (14): X-Pg 3 (14) . where X is halo and Pg 3 is a nitrogen protecting group, under suitable nitrogen protecting conditions to provide a compound of formula (15): where p and R 2 are each as described above for the compound of formula (I), and Pg 3 is a nitrogen protecting group, or a pharmaceutically acceptable salt thereof;treating a compound of formula (15) under suitable Grignard reaction conditions with an intermediate Grignard addition product formed from the treatment of a compound of formula (4): (4) where r and R 3 are each as defined above for the compound of formula (I), with a Grignard reagent of formula (5): R gX (5) where R is alkyl and X is iodo, bromo or chloro, under suitable conditions to provide a compound of formula (16): where p, r, R 2 and R 3 are each as described above for the compound of formula (I) and Pg 3 is a nitrogen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof;treating a compound of formula (16) with a compound of formula (7): : Pg 1 x (7) · where X is halo and Pg 1 is an oxygen protecting group under suitable protecting conditions to provide a compound of formula (17): (17) where p, r, R 2 and R 3 are each as described above for the compound of formula (I), Pg 1 is an oxygen protecting group and Pg 3 is a nitrogen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof;treating a compound of formula (17) under suitable dehydroxylation conditions to provide a compound of formula (18): where p, r, R 2 and R 3 are each as described above for the compound of formula (I), Pg 1 is an oxygen protecting group and Pg 3 is a nitrogen protecting group, as a racemic mixture of enantiomers or as a non-racemic mixture of enantiomers, or a pharmaceutically acceptable salt thereof;treating a compound of formula (18) with a compound of formula (10): Pg 2 OCH 2 X (10) where Pg 2 is an oxygen protecting group and X is halo, under suitable C- alkylation conditions comprising the presence of a phase transfer catalyst to provide a compound of formula (19): where p, r, R 2 and R 3 are each as described above for the compound of formula (I), Pg 1 and Pg 2 are each independently an oxygen protecting group and Pg 3 is a nitrogen protecting group, as an isolated (S)-enantiomer, or a non- racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof;treating a compound of formula (19) under suitable deprotection conditions to provide a compound of formula (20): where p, r, R 2 and R 3 are each as described above for the compound of formula (I), and Pg 3 is a nitrogen protecting group, as an isolated (S)- enantiomer, or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof;treating a compound of formula (20) under suitable Mitsunobu reaction conditions to provide the compound of formula (21): (21) where p, r, R 2 and R 3 are each as described above for the compound of formula (I), and Pg 3 is a nitrogen protecting group, as an isolated (S)- enantiomer, or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof;treating a compound of formula (21 ) under suitable nitrogen deprotecting conditions to provide a compound of formula (22): (22) where p, r, R 2 and R 3 are each as described above for the compound of formula (I), as an isolated (S)-enantiomer, or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof;andi) treating a compound of formula (22) with a compound of formula (2): X-R 1 (2) . where X is halo and R 1 is as described above for the compound of formula (I), or a pharmaceutically accceptable salt thereof, under suitable A/-alkylation conditions to provide a compound of formula (I), as an isolated (S)-enantiomer, or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  78. 78
    81. A compound of formula (19), a compound of formula (20), a compound of formula (21) or a compound of formula (22):(22) wherein: each p and r is independently 1 , 2, 3 or 4;each Pg 1 and Pg 2 is independently an oxgyen protecting group;each Pg 3 is a nitrogen protecting group;each R 2 is independently selected from the group consisting of hydrogen, alkyl, alkenyl, alkynyl, alkoxy, halo, haloalkyl, haloalkenyl, haloalkoxy, cycloalkyl, cycloalkylalkyl, aryl, aralkyl, aralkenyl, heterocyclyl, heterocyclylalkyl, heteroaryl, heteroarylalky!, -R 8 -CN, -R 8 -N0 2l -R 8 -OR 5 , -R 8 -N(R 4 )R 5 , -N=C(R 4 )R 5 , -S(0) m R 4 , -OS(0) 2 CF 3 , -R 8 -C(0)R 4 , -C(S)R 4 , -C(R ) 2 C(0)R 5 , -R 8 -C(0)OR 4 , -C(S)OR 4 , -R 8 -C(0)N(R 4 )R 5 , -C(S)N(R 4 )R 5 , -N(R 5 )C(0)R 4 , -N(R 5 )C(S)R 4 , -N(R 5 )C(0)OR 4 , -N(R 5 )C(S)OR 4 , -N(R 5 )C(0)N(R 4 )R 5 , -N(R 5 )C(S)N(R )R 5 , -N(R 5 )S(0) n R 4 , -N(R 5 )S(0) n N(R )R 5 , -R 8 -S(0) n N(R )R 5 , -N(R 5 )C(=NR 5 )N(R 4 )R 5 , and -N(R 5 )C(=N-CN)N(R 4 )R 5 , wherein each m is independently 0, 1 , or 2 and each n is independently 1 or 2;and wherein each of the cycloalkyl, cycloalkylalkyi, aryl, aralkyi, aralkenyi, heterocyclyl, heterocyclylalkyl, heteroaryl and heteroarylalkyl groups for R 2 may be optionally substituted by one or more substituents selected from the group consisting of alkyl, alkenyl, alkynyl, alkoxy, halo, haloalkyi, haloalkenyl, haloalkoxy, cycloalkyl, cycloalkylalkyi, aryl, aralkyi, aralkenyi, heterocyclyl, heterocyclylalkyl, heteroaryl, heteroarylalkyl, -R 8 -CN, -R 8 -N0 2 , -R 8 -OR 5 , -R 8 -N(R 4 )R 5 , -S(0) m R 4 , -R 8 -S(0) n N(R )R 5 , -R 8 -C(0)R 4 , -R 8 -C(0)OR 4 , -R 8 -C(0)N(R 4 )R 5 , -N(R 5 )C(0)R 4 , and -N(R 5 )S(0) n R 4 , wherein each m is independently 0, 1 , or 2 and each n is independently 1 or 2;or any two adjacent R 2 's, together with the adjacent carbon ring atoms to which they are directly attached, may form a fused ring selected from cycloalkyl, aryl, heterocyclyl and heteroaryl, and the other R 2 's, if present, are as defined above;each R 3 is independently selected from the group consisting of hydrogen, alkyl, alkenyl, alkynyl, aikoxy, halo, haloalkyi, haloalkenyl, haloalkoxy, cycloalkyl, cycloalkylalkyi, aryl, aralkyi, aralkenyi, heterocyclyl, heterocyclylalkyl, heteroaryl, heteroarylalkyl, -R 8 -CN, -R 8 -N0 2 , -R 8 -OR 5 , -R 8 -N(R 4 )R 5 , -N=C(R )R 5 , -S(0) m R 4 , -OS(0) 2 CF 3 , -R 8 -C(0)R 4 , -C(S)R 4 , -C(R 4 ) 2 C(0)R 5 , -R 8 -C(0)OR 4 , -C(S)OR 4 , -R 8 -C(0)N(R 4 )R 5 , -C(S)N(R 4 )R 5 , -N(R 5 )C(0)R 4 , -N(R 5 )C(S)R 4 , -N(R 5 )C(0)OR 4 , -N(R 5 )C(S)OR 4 , -N(R 5 )C(0)N(R )R 5 , -N(R 5 )C(S)N(R )R 5 , -N(R 5 )S(0) n R 4 , -N(R 5 )S(0) n N(R 4 )R 5 , -R 8 -S(0) n N(R )R 5 , -N(R 5 )C(=NR 5 )N(R 4 )R 5 , and -N(R 5 )C(N=C(R 4 )R 5 )N(R 4 )R 5 , wherein each m is independently 0, 1 , or 2 and each n is independently 1 or 2;or any two adjacent R 3 's, together with the adjacent carbon ring atoms to which they are directly attached, may form a fused ring selected from cycloalkyl, heterocyclyl, aryl or heteroaryl, and the other R 3 's, if present, are as defined above;each R 4 and R 5 is independently selected from group consisting of hydrogen, alkyl, alkenyl, alkynyl, haloalkyi, alkoxyalkyi, cycloalkyl, cycloalkylalkyi, aryl, aralkyi, heterocyclyl, heterocyclylalkyl, heteroaryl, and heteroarylalkyl;or when R 4 and R 5 are each attached to the same nitrogen atom, then R 4 and R 5 , together with the nitrogen atom to which they are attached, may form a /V-heterocyclyl or a A/-heteroaryl;and each R 8 is a direct bond or a straight or branched alkylene chain, a straight or branched alkenylene chain or a straight or branched alkynylene chain;as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  79. 79
    82. The compound of Claim 81 having the formula (19a), the formula (20a), the formula (21a) or the formula (22a):(22a) where each q is independently 1 or 2, each Pg 1 and each Pg 2 is independently an oxygen protecting group, each Pg 3 is a nitrogen protecting group, and each p, each R 2 and each R 3 is as defined above in Claim 80, as an isolated (S)-enantiomer or a non- racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  80. 80
    83. The compound of Claim 82 having the formula (19a1) or formula (19a2):(19a1 ) or (19a2) wherein each Pg 1 and each Pg 2 is independently an oxygen protecting group and each Pg 3 is a nitrogen protecting group, as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  81. 81
    84. The compound of Claim 82 having the formula (20a1) or the formula (20a2):wherein each Pg 3 is independently a nitrogen protecting group, as an isolated (S)- enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
  82. 82
    85. The compound of Claim 82 having the formula (21 a1) or the formula (21 a2):wherein each Pg 3 is independently a nitrogen protecting group, as an isolated (S)- enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof. 86. The compound of Claim 82 having the formula (22a1) or the formula (22a2): as an isolated (S)-enantiomer or a non-racemic mixture of enantiomers having an enantiomeric excess of the (S)-enantiomer of greater than 80%, or a pharmaceutically acceptable salt thereof.
Independent claims82