New pyridone and pyridine derivatives,their preparation and pharmaceutical compounds containing them
16 claims: 8 independent, 8 dependent
- 111. Preparations for treating inflammation containing as an active ingredient a compound having one of the structures I or II:. i in which ! is hydrogen, lower alkyl, / - ' ׳ phenyl f ar-lower alkyl, halogen lower alkoxy amino diloweralkylamino diloweralkylamino loweralkyl nitro ! loweralkylsulfonyl phenylsulfonyl or triphenylmethyl R2 is hydrogen loweralkyl loweralkenyl hydroxy 36 11755 amino 1 loweralkynyl phenyl aubotitutod ar loweralkyl benzamido loweralkanoylamino carbobenzoxyamino carb=loweralkoxy amino benzylidineairiino phenylureido aminoloweralkyl loweralkylamino lower alkyl diloweralkylamino lower alkyl loworalkanoyl lowor alky! cyanoloweralkyl carboxyloweralkyl hydroxyloweralkyl or 2'-quinolyl Rg is hydrogen or loweralkyl r. and R_ are the same or different and are 4 5 hydrogen loweralkyl phenyl halogen trihalo-loweralkyl loweralkoxy amino lower-dialkylamino nitro cyano sulfamoyl r d־i-lowor-alky ס - 1־ u 1 f amoyl . hydroxy mercapto lower alkylthio lower alkylsulfinyl lower alkylsulfonyl carbamoyl carboxy gu-lfo or phenylsulfonyl Rg is oxygen or sulfur R_ is 0R o or / O SR 8 in which R o is loweralkanoyl or loweralkyl benzyl nitrobenzyl lower alkylbenzyl halobenzyl aminobenzyl lower alkylaminobenzyl lower alkoxybenzyl methylenedioxybenzyl the group of and [A] is carbocylic or heterocyclic aryl -&ueh--a6 comprised from / phenyl, thiazolyl thienyl pyridyl or furyl and is linked to the 3 or 4 position. Preparations
- 2Tho method of Claim 1 in which the compound has Structure I. ?reparations
- 3The me4skod- of Claim 2 in !vhich the compound is 3-phenyl-pyridone-2. Preparations
- 4The method of Claim 2 in which the compound is 4-pheny1-pyridone-2. Preparations
- 5The method of Claim 2 in which the compound is 3-(p-dimethylaminophenyl)-pyridone-2.
- 6A compound having one of the Structures I or II II lower alkyl phenyl ar-lower alkyl halogen halo- lower ״al-ky-llower alkoxy amino diloweralkylamino diloweralkylamino loweralkyl nitro loweralkylsulfonyl phenylsulfonyl phenexy oulfo- or triphenylmethyl Rg is hydrogen loweralkyl loweralkenyl hydroxy amino •loweralkynyl phenyl subotitutod ar—lowor alkyl ar-loweralkenyl benzamido loweralkanoylamino carbobenzoxyamino carb-loweralkoxyamino benzylidineamino phenylureido aminoloweralkyl loweralkylamino lower alkyl diloweralkylamino lower alkyl loworalkanoyl lower alkyl cyanoloweralkyl carboxyloweralkyl hydroxyloweralkyl or 2'-quinolyl 40 117 55 R 3 is hydrogen or loweralkyl R^ and Rg are the same or different and are hydrogen loweralkyl phenyl halogen trihalo-loweralkyl loweralkoxy amino lower-dilalkylamino nitro cyano aulfamoy-l. loweralkyl sulfamoyl diloworalkyl-aulf amey-l.hydroxy mercapto lower alkylthio lower alkylsulfinyl lower alkylsulfonyl carbamoyl carboxy aulfa or phenylsulfonyl Rg is oxygen or sulfur R- is 0R Q or / 0 SR 8 in which R o is loweralkanoyl or o loweralkyl benzyl nitrobenzyl lower alkylbenzyl halobenzyl aminobenzyl lower alkylaminobenzyl lower alkoxybenzyl methylenedioxybenzyl and [A] is carbocyclic or heterocyclic aryl saeh-as comprised from/ phenyl,thiazolyl thienyl pyridyl or furyl provided that when R^ is phenyl, Rg is loweralkyl and when R^ is loweralkyl, R 3 is hydrogen, and also provided that when Rj is loweralkyl, is other than hydrogen.
- 7A compound of Claim 6 having the Structure I.
- 8A compound of Claim 7 in which R^, Rg, Rg, R^, and R 5 are hydrogen, Rg is oxygen and [A] is phenyl.
- 9A compound of Claim 7 having the structure
- 10A compound of Claim 7 having the structure 31133/2 . t צ
- 11A process of preparing a compound of the structure. j in which is hydrogen lower alkyl phenyl ar-lower alkyl halogen lower alkoxy amino diloweralkylamino diloweralkylamino lower alkyl nitro .loweralkyIsulfonyl phenylsulfonyl or triphenylmethyl R 2 is hydrogen loweralkyl loweralkenyl hydroxy amino . loweralkynyl phenyl A A 11755 ar-lower alkenyl— benzamido loweralkanoylamino carbobenzoxyamino carb-loweralkoxyamino benzylidineamino phenylureido am ino1oweraIky1 loweralkylamino lower alkyl diloweralkylamino lower alkyl loworalkanoyl lower alkyl cyanoloweralkyl carboxyloweralkyl hydroxyloweralkyl or 2'-quinolyl R 3 is hydrogen or loweralkyl R. and R_ are the same or different and are כ 4 hydrogen loweralkyl phenyl halogen trihalo-loweralkyl loweralkoxy amino lower-dialkylamino nitro cyano gulf ameylloweralkylgulf amoyl d-ilewer-alkyl-sulfamoyl 44 .-.,. .. , ׳״.״—/ .- .... ... . . I.,.- .—4 U״«.... ... La . . ________________________________.__________LJ____________ 4 ״ i - 11755 ' 51153/2 hydroxy mercapto lower alkylthio lower alkylsulfinyl lower alkylsulfonyl carbamoyl ׳ . . ί carboxy sulfo or phenylsulfonyl .Rg is oxygen or :sulfur and [A] is carbocyclic or heterocyclic aryl com p r i S ed from the group of phenyl thiazolyl .-------———~—------thienyl pyridyl or .׳־ furyl and io linkod to tho 3 or 4 pooition provided that when Rj. is phenyl, Rg is lower alkyl and when R^ is lower alkyl, Rg is hydrogen, and also provided that when Rg is lower alkyl, R^ is other than hydrogen, which comprises reaction of a compound of the formula with either a lower alkanoic anhydride or a' halogenating agent, followed by hydrolysis to give a compound of the structure H and, if desired, substituting on the 1-nitrogen by reaction of the 1-alkali metal derivative thereof, with a halogen com״ pound, and, if desired, converting any of said substituents R., R-, R,, R c and R, to another substituent, and, if desired, 13 4□ 0 converting said compound to a thiopyridone by reaction with P 2 S 5.
- 12A process of preparing a compound of the Structure in which ?! is hydrogen lower alkyl phenyl ar-lower alkyl halogen halo-l-owor alkyl lower alkoxy amino diloweralkylamino diloweralkylamino lower alkyl nitro loweralky!sulfonyl phenylsulfonyl phenoxy sulfo or triphenyhnethyl R 2 is hydrogen loweralkyl loweralkenyl 46 hydroxy amino loweralkynyl phenyl aubatitutod pheny-l.ar-lower alkyl ' benzamido loweralkanoylamino carbobenzoxyamino carb-loweralkoxyamino benzylidineamino phenylureido aminoloweralkyl loweralkylamino lower alkyl diloweralkylamino lower alkyl cyanoloweralkyl carboxyloweralkyl hydroxyloweralkyl or ?'-quinolyl Rg is hydrogen or loweralkyl R. and R_ are the same or different and are 4 5 hydrogen loweralkyl phenyl halogen trihalo-loweralkyl loweralkoxy amino lower-dialkylamino nitro cyano sulfamoyl . ¾1755 hydroxy mercapto lower alkylthio lower alkylsulfinyl lower alkylsulfonyl carbamoyl carboxy or . phenylsulfonyl ..... ־־/ ' Κθ is oxygen orj. sulfur and [A] is carbocyclic or heterocyclic aryl comprised from the gwp of phenyl.:thiazolyl .־ thienyl . . pyridyl or furyl 10 linked to the 3 or 4 position provided that when R 1 is phenyl, r 3 is iower alkyl and when R 1 ־ is lower alkyl, R 3 is hydrogen, and also provided that when R 2 is lower ' alkyl, is other than hydrogen, which comprises oxidizing a .compound of the formula to give a compound of the structure 48 ־ - and, if desired, substituting on the 1-nitrogen by reaction of the 1-alkali metal derivative thereof with a halogen compound, and, if desired, converting any of said substituents Rp R^, R 4 , R 5 and Κθ to another substituent, and, if desired, converting said compound to a thiopyridone by reaction with P 2 S 5* '
- 15A process of preparing a compound of the structure , in which ‘ Rj is hydrogen lower alkyl phenyl ar-lower alkyl halogen lower alkoxy amino diloweralkylamino diloweralkylamino lower alkyl nitro loweralkylsulfonyl ......Phenylsulfonyl 49 11755 oulfo- or triphenylmethyl R3 is hydrogen or loweralkyl R. and R_ are the same or different and are 4 .5 hydrogen loweralkyl phenyl halogen trihalo-loweralkyl loweralkoxy amino lower-dialkylamino nitro cyano sui-famoyl .leweralkyl-sulfamoyl di lower-alky 1- sul f amoy-l. hydroxy mercapto lower alkylthio lower alkylsulfinyl lower alkylsdlfonyl carbamoyl carboxy gul-fe or phenylsulfonyl R 7 is ORg or sr 8 in which Rg is loweralkanbyl or loweralkyl 117 55 benzyl nitrobenzyl lower alkylbenzyl halobenzyl aminobenzyl lower alkylaminobenzyl lower alkoxybenzyl methylenedioxybenzyl the group o f and [A] is carbocyclic or heterocyclic aryl suek—a-9- comprised from/ phenyl thiazolyl thienyl pyridyl or furyl -and ia linked to the 3 or 4 pos-i-t-i-θη- provided that when R^ is phenyl, Rj is lower alkyl and when R^ is lower alkyl, is hydrogen, which comprises reaction of a compound of the formula with an alcoholate or thioalcoholate.
- 16A process for the production of 3-(pdimethylaminophenyl)-pyridone-2 which comprises the reductive methylation of 3-(p-nitrophenyl)-pyridone-2.
Independent claims16
309 paragraphs in 28 sections, as filed
New pyridone and pyridine sulfide derivatives, their preparation and pharmaceutical compounds containing them
MERCK & CO,, INC,
!־
- la This invention relatesto preparations for treating inflammation which contain as an active ingredient a compound having one of the structures I or II:
<img file="IL31133A_D0001.tif" />
8' <sup>R</sup>2 Q
׳ . <sup>1</sup> 1 in which j is hydrogen ! lower alkyl phenyl ar-lower alkyl halogen lower alkoxy amino diloweralkylaming diloweralkylamino loweralkyl nitro loweralkylsulfonyl phenylsulfonyl <sub>or</sub>׳ ’ ' ” . U— .. . ״״» .*״* 4 ״ . ... .
triphenylmethyl is hydrogen loweralkyl loweralkenyl
<img file="IL31133A_D0002.tif" />
<td> 1</td><td> hydroxy</td>
<td> 2</td><td> amino</td>
<td> 3</td><td> loweralkynyl</td>
<td> , 4</td><td> phenyl</td>
<td> 5</td><td> oubotit-utod</td>
<td> 6</td><td> ar- low-eralky-1</td>
<td> 7</td><td> ar- loworalkeny-l.-</td>
<td> β</td><td> benzamido</td>
<td> 9</td><td> loweralkanoylamino</td>
<td> 10</td><td> carbobenzoxyamino</td>
<td> 11'</td><td> carb-loweralkoxyamino</td>
<td> 12</td><td> benzylidineamino</td>
<td> י 13</td><td> phenylureido</td>
<td> 14</td><td> aminoloweralkyl</td>
<td> 15</td><td> loweralkylamino lower alkyl</td>
<td> 16</td><td> diloweralkylamino lower alkyl</td>
<td rowspan="2"> 17</td><td></td>
<td></td>
<td> 18</td><td> carboxyloweralkyl</td>
<td> 19</td><td> hydroxyloweralkyl</td>
<td> 20</td><td> cyanoloweralkyl or 2'-quinolyl</td>
<td> 21</td><td> R<sub>3</sub> is hydrogen or</td>
<td> 22</td><td> loweralkyl</td>
<td> 23</td><td> R<sub>4</sub> and R<sub>5</sub> are the same or different</td>
<td> 24</td><td> hydrogen</td>
<td> 25</td><td> loweralkyl ,</td>
<td> 26</td><td> phenyl</td>
<td> 27</td><td> halogen</td>
<td> 28</td><td> trihalo-loweralkyl</td>
<td> 29</td><td> loweralkoxy</td>
<td> 30</td><td> amino</td>
<td> 31</td><td> lower-dialkylamino</td>
<td> 32</td><td> nitro</td>
and are
755 ,־11 cyano sulfamoyl
1oweralkyI-Bulfamoy1 d-iloweralkyl-sulf amoyl hydroxy mercapto lower alkylthio lower alkylsulfinyl lower alkylsulfonyl carbamoyl carboxy sulfo or phenylsulfonyl
Rg is oxygen or sulfur
R^ is ORg or <sup>SR</sup>8 in which
R<sub>o</sub> is loweralkanoyl or 0 loweralkyl benzyl nitrobenzyl lower alkylbenzyl halobenzyl aminobenzyl lower alkylaminobenzyl lower alkoxybenzyl methylenedioxybenzyl group of and [A] is carbocylic or heterocyclic aryl s-weh-ets comprised from the/ phenyl thiazolyl « «. 4 *״ י thienyl pyridyl or furyl and is linked to the 3 or 4 position. More specifically also, this invention relates to certain, novel active compounds which are contained in the above preparations.
In the past, a standard treatment of inflammation has been to administer various compounds of the steroid class. These had the great disadvantage of affecting the calcium in the bones after prolonged administration’.
י
Recently,‘ certain non-steroid drugs have been, introduced which eliminate, to a large extent, this deficiency. How- ever, there’still remains the problem of certain other side | effects such as haematological disorders and irritations in i <sup>1</sup> the gastro intestinal tract. There is, therefore, a need , for new compounds for the treatment of inflamination which will further reduce the side effects experienced on chronic administration.
We have found that inflammation can be treated advantageously with the class of compounds known generical- ly as 3. or 4-phenyl-2-[1H]-pyridone including the parent compound of each series, namely, 3- or 4-phenyl-2- [1H]- pyridone. Treatment of inflammation with this class of com- pounds shows less side effects than with prior drugs while retaining excellent effectiveness. ,
The novel compounds according to the invention are those .
of either the structures I or II above, with the various substituents having the definitions given above, wherein the group is always linked to the'J-position of the heterocyclic <sup>R</sup>5 .
ring<sub>׳</sub>with the added provisos that when R^ is phenyl, R^ is loweralkyl; when R^ is loweralkyl, R^ is hydro_ 11,755
11?. ® gen and when R<sub>2</sub> is loweralkyl, R^ is other than hydrogen. The preparation of the compounds of this invention are described in the Flow Sheet for 3-phenyl-2-[1H]pyridone compounds. The reactions described operate equally for the 4-phenyl compounds. In general, a 3- or 4-aminopyridine is diazotized in the presence of benzene or a substituted benzene. The resultant 3-phenylpyriaine is then oxidized to the corresponding N-oxide. The N-oxide can be converted by one of two methods into the 3-phenyl-2-[1H]pyridone. In the first, the N-oxide is heated with lower alkanoic anhydride which results in the formation by rearrangement of 2-acyloxy 3- or 4-pheny!pyridine which upon acid or preferably basic hydrolysis gives the 3- or 4pheny1-2-[1H]-pyridone. Alternatively, the N-oxide is treated with chlorinating agent which again, by rearrangement, produces corresponding 2-chloropyridine which also upon hydrolysis gives the 3- or 4-phenyl-2 [1H]-pyridone. The 2-chloro-3-pheny!pyridine oxide is also prepared by direct oxidation of 2-chloro-3-phenylpyridine. The 3- or
4-phenyl-2[1H]-pyridones (Compound VI in the Flow Sheet) may be converted to the corresponding 3- or 4-phenylthiopyridones by treatment with phosphorus pentasulfide. The 3- or 4-phenyl-2[1H]-pyridones of Compound VI may be converted to the !-substituted 3- or 4-pheny1-2[1H]-pyridones of Compound IX by the action of alkylating agents. Certain other compounds to be used in the method of this invention, namely, the 3-phenylalkoxy or alkylthiopyridines (Compound XI) are prepared from the 2-chloropyridines by use of the sodium alcoholate or thioalcoholate. When 3- or 4-(nitrophenyl)-pyridones are prepared, the nitro group can be reduced to the amino group and this can be used, via a Sand-
11,755 <1.
meyer type reaction, to prepare halo, cyano, mercapto, etc., derivatives.
The Flow Sheet also shows an alternate method of making the 3- or 4-phenyl-2[1H]-pyridones which is the oxidation of the corresponding 3- or 4-phenyIpiperidones. It should be noted that the reactions shown in the Flow Sheet are numbered with numbers corresponding to the Examples which follow in this specification and which illustrate these reactions.
Other methods have been known in the literature for the preparation of 3- or 4-phenyl-2[1H]-pyridones. A 3or 4-amino 2-halogenopyridine can be diazotized in the presence of a benzene to get Compound VII, directly, nitro benzenes can be heated with pyridines at very elevated temperatures to produce 3- or 4-pheny!pyridines. An open chain substituent on a benzene compound can be cyclized to form the pyridone ring or a piperidone ring which can be oxidized as described above to the 3- or 4-phenyl-2 [III]-pyridone. A 3- or
4-phenylpyridine 2-sulfonic acid, upon fusion with caustic, gives a 3- or 4-pheny1-2 [1H]-pyridone. An alpha pyrone can be treated with ammonia to give a 3- or 4-pheny1-2[1H]-pyridone.
3- or 4-pheny!pyridines can be hydroxylated directly in the vapor phase. 3- Or 4-pheny1 2-aminopyridines can be diazotized and the diazo compound hydrolyzed to give a 3- or
4- pheny 1-2 [III]-pyridone. The N-oxides (Compound IV) can be rearranged under the influence of light to give the 3-phenyl2-[1H]-pyridones. The !-substituted-3- or 4-phenyl-2 [1H] -pyridones (Compound IX) can be prepared by the direct oxidation of the corresponding 3- or 4-pheny1 N-pyridinium compounds. These various preparations generally are not as practical in the synthesis of these compounds as the ones described
11,755 in the Flow Sheet, being either highly specialized in what compounds can be used or being methods which give poorer yields or for other inherent weaknesses.
In the treatment of inflammation by 3-phenyl2[1H]-pyridones, the medicament may be administered orally, intravenously or applied topically. It can be used with any ordinary pharmaceutical carrier. In formulations, it can be pressed into shaped dosage forms, such as pills or tablets, or be encapsulated or dissolved in isotonic solution for I.V. use or made into ointments for topical use. The standard pharmaceutical ingredients normally used in pharmaceutical formulations can be used in formulating these compounds. Inflammation is treated by the administration from 0.5 to 30 milligrams of the compound per kg. body weight per day. An example of the above class is the simple unsubstituted 3-phenyl-2[1H]-pyridone which should be administered in a dosage range of from 2 to 15 mg./kg. of body weight/day. The 3-phenyl-2[1H]-pyridone is effective at
10-30 milligrams per kilogram in rats. The patients used in this treatment may be either animal or human since all warm-blooded species are subject to the ills of inflammation.
11755
<img file="IL31133A_D0003.tif" />
11755
<img file="IL31133A_D0004.tif" />
FLOW SHEET - (Cont'd)
<img file="IL31133A_D0005.tif" />
IX X
11,755
<img file="IL31133A_D0006.tif" />
Reactions
1. Addition of or to amyl nitrite with or without an inert solvent, followed by heat. Amyl nitrite can be replaced by other organic solvent-soluble nitrosating agents.
2. Oxidation in an inert solvent. <sup>H</sup>2°2 <sup>a</sup> P<sup>re</sup>^<sup>erre</sup>^ agent.
2a. Oxidation is an inert solvent (e.g. acetic acid) with peracetic acid.
3. (a) Heating with a lower alkanoic anhydride in an inert atmosphere. Acetic anhydride preferred.
(b) Hydrolysis, usually by contact with water, also in presence of alkali or acid.
4. (a) Heating with a chlorinating agent, such as PCl^ in an inert solvent.
(b) Hydrolysis, usually by cone. base.
5. Heating with a dehydrogenating agent such as with palladium on charcoal in an inert atmosphere.
6. Reaction with a strong base, e.g. NaH in an inert atmosphere, followed by addition of an alkylating agent such as an aliphatic tosylate, sulfate or aliphatic halide.
7. Heating with strong base (e.g., NaOH) and an unsaturated organic compound such as acrylonitrile or an a-haloacid derivative such as chloroacetic acid. (The latter procedure is described in J. Am. Chem. Soc. 71, 1949 , p. 390. ) l-Carboxymethyl-3-phenyl-2-pyridone, m.p. 93-96°C., may be prepared by this procedure.
8. Reaction with a strong base such as NaH in an inert atmosphere, followed by heating with iodobenzene or a substituted iodobenzene.
9. Stirring at low temperatures, preferably cold with an N-halo amino compound.
10. Heating with an alkanoic acid anhydride, preferably with acetic anhydride at 130-140°C.
' 11,755
<img file="IL31133A_D0007.tif" />
11. Heating with bhe absence of OH, ketone or amino groups in the molecule).
12. Heating with a metal alkoxide or other alcoholate.
13. Heating with a metal mercaptide,
Our invention can be illustrated by the following examples.
EXAMPLE 1
A. 3-Aminopyridine (39 g.) in 1.5 1. of anhydrous benzene is treated with amyl nitrite (68 g.) and the result- ing mixture heated slowly to 81°C., and kept overnight at this temperature. The solution is decanted from some tar which has precipitated; and the excess benzene removed in vacuo. Distillation of the residue yields 3-phenyl- pyridine (38 g.; 59%), b.p. 102-105.5° (2.5 mm.) as a yellow oil.
Similarly, when 4-amino pyridine is used in the above example in place of 3-amino pyridine, there is ob— tained 4-phenylpyridine.
B. Similarly, when the benzene in Part 1A is replaced by toluene, anisole, benzonitrile, nitrobenzene, <sup>,</sup>fluorobenzene, benzotrifluoride, naphthalene, ο-, m-, and p-xylenes, o-, m-, and p-dichlorobenzenes, hydroquinone dimethyl ether, veratrole, resorcinol dimethyl ether, biphenyl, thiophene, furan or thiazole, the corresponding substituted phenylpyridines, 3-(0-, m-, and p-nethyljSkenyl;- pyridines, 3-(0-, m-, and p-methoxyphenyl)-pyridines, 3- (ο-, m-, and p-cyanophenyl)-pyridines, 3-(0-, m- and p- <sub>;</sub> nitrophenyl)-pyridines, 3-(0-, m-, and p-fluorophenyl)- pyridines, 3-(0-, m-, and p-trifluoromethylphenyl)-pyridines,
3-(a- and (3-napthyl)-pyridines, 3~(o,m-, m<sub>״</sub>p. 0,0'-, o,p-
11,755 and o,m'-dimethylphenyl)-pyridines, 3-(o,m~, m,p-, 0,0'-, ο,ρ-, m,m'-, and 0,m'-dichlorophenyl)-pyridines, 3-(0,m-, m,p-, 0,0'-, ο,ρ-, and m,m'- and 0,m'-dimethoxyphenyl)-pyridines, 3-(0-, m-, and p-biphenylyl)-pyridines, 3-(2-thienyl)-pyridines, 3-(2* and 3'-furyl)-pyridines, and 3-(2'-, 4'- and 5'-thiazolyl)-pyridines are obtained after separation of isomers via fractional distillation and/or column and vapor-phase chromatography.
C. 3-Aminopyridine (39 g.) in 1.5 1. of anhydrous chlorobenzene is treated with amyl nitrite (68 g.) as described in (A) above. Distillation of the concentrated reaction mixture yields 35.4 g. of the three isomers, b.p. 110-130° at ca. 2.5 mm. The fraction boiling 110-113°C. at ca. 2.5 mm. consists of 11.5. of nearly one component material; I.R.<sub>r</sub> N.M.R., U.V. and T.L.C on this and on products derived from this indicate the o-isomer. The other isomers are isolated from the higher boiling fractions via purification of their picrates, followed by regeneration of the free bases. When 4-aminopyridine is used in place of
3- aminopyridine in the above procedure, the corresponding
4- phenylpyridines are obtained.
D. In cases where the benzene-substitute is a solid, an inert co-solvent is used and the amount of benzenesubstitute reduced. Also, the phenylpyridines listed in (A) above are obtained by coupling a substituted aniline, as o-chloroaniline, with pyridine via the above procedure, and separating the isomeric α-, β- and μ- pyridines, to give the desired 3-(substituted phenyl)-pyridine.
E. When 5-amino-2-picoline is used in place of 3-aminopyridine in procedure (A) above, 6-methyl-3-phenyl)-
11,755 pyridine is obtained. Similarly, when 5-amino-3-picoline,
3-amino-4-picoline, 5-amino-2-chloropyridine, 3-amino-5- chloropyridine, 3-amino-4-chloropyridine, 5-amino-2- methoxypyridine, 3-amino-5-methoxypyridine, 3-amino-4- methoxypyridine, 5-amino-2-nitropyridine, 3-amino-5-nitro- pyridine, 3-amino-4-nitropyridine, 5-amino-2-ethoxypyridine,
3-amino-5-ethoxypyridine, 3-amino-4-ethoxypyridine, 5- amino-2-ethylpyridine, 3-amino-4-ethylpyridine, 5-amino-2- phenethyl, 3-amino-4-phenethylpyridine, 5-amino-2-fluoro- pyridine, 5-amino-2-(methylsulfonyl)-pyridine, 3-amino-4- (methylsulfonyl)-pyridine, 5-amino-2-(phenylsulfonyl)- pyridine, 5-amino-3-chloro-2-phenoxy-pyridine, 5-amino-2- methoxy-4-picoline, and 3-amino-5-phenyl-4-picoline are used in place of 3-aminopyridine in the same procedure, 5- methyl-3-phenylpyridine, 4-methyl-3-phenylpyridine, 6- chloro-3-phenylpyridine, 5-chloro-3-phenylpyridine, 4- chloro-3-phenylpyridine, 6-methoxy-3-phenylpyridine, 5- methoxy-3-phenylpyridine, 4-methoxy-3-phenylpyridine, 6- nitro-3-phenylpyridine, 5-nitro-3-phenylpyridine, 4-nitro-
3-phenylpyridine, 6-ethoxy-3-phenylpyridine, 5-ethoxy-3-׳ phenylpyridine, 4-ethoxy-3-phenylpyridine, 6-ethyl-3- phenylpyridine, 4-ethyl-3-phenylpyridine, 6-phenethyl-3- phenylpyridine, 4-phenethyl-3-phenylpyridine, 6-fluoro-3- phenylpyridine, 6-methylsulfonyl-3-phenylpyridine, 4- methylsulfonyl-3-phenylpyridine, 6-phenylsulfonyl-3- phenylpyridine, 5-chloro-6-phenoxy-3-phenylpyridine, 6- .methoxy-4-methyl-3-phenylpyridine and 3,5-diphenyl-4- methylpyridine are obtained.
F. When the substituted benzenes of (B) are used in place of benzene in part (E) above, the corresponding substituted phenyl substituted pyridines are obtained.
11,755 ί־.
G. 3-Amino-2-chloropyridihe (5.1 g.) in 50 ml. of anhydrous benzene is added dropwise over 32 minutes to 150 ml. of benzene to which has just been added 8 ml. of
1- amyl nitrite and which is held at 50-56°C. The mixture is heated to 75°C. over 2 hours and worked up as in part (A) to give 2-chloro-3-phenylpyridine.
H. Similarly, when the benzene in the above reaction is replaced by pyridine, methylphenylsulfide or any of the benzene substitutes used in part (B), the corresponding 2-chloro-3-amylpyridine is obtained. The products are mixtures of the isomeric arylpyridines and the isomers are separated by fractional distillation and/or column and vapor phase chromatography. In this way, there are obtained 2chloro-3-(2',3*- and 4'-pyridine)-pyridines, 2-chloro-3(ο-, m- and p-methy1thiophenyl)-pyridines, 2-chloro-3-(0-, m- and p-methylphenyl)-pyridines, 2-chloro-3-(ο-, m- and p-methoxyphenyl)-pyridines, 2-chloro-3-(ο-, m- and p-cyanophenyl)-pyridines, 2-chloro-3-(ο-, m- and p-nitrophenyl)pyridines, 2-chloro-3-(ο-, m- and p-fluorophenyl)-pyridines,
2- chloro-3-(0-, m- and p-trifluoromethylphenyl)-pyridines,
2-chloro-3-(a- and β-naphthyl)-pyridines, 2-chloro-3-(o,m-, m,p-, 0,0’-, ο,ρ-, m,m'- and o,m'-dimethylphenyl)-pyridines, 2-chloro-3-(o,m-, m,p-, 0,0'-, ο,ρ-, m,m'- and 0,m'-dichlorophenyl)-pyridines, 2-chloro-3-(o,m-, m,p-, 0,0'-, ο,ρ-, m,m'and 0,m'-dimethoxyphenyl)-pyridines, 2-chloro-3-(ο-, m- and p-biphenylyl)-pyridines, 2-chloro-3-(2-thienyl)-pyridines, 2-chloro-3-(2- and 3-furyl)-pyridines, and 2-chloro-3-(2'-, 4'- and 5'-thiazolyl)-pyridines.
11,755
I EXAMPLE 2
A. 3-o-Chlorophenylpyridine (11.4 g.) in 40 ml. of glacial acetic acid is treated at 27°C. with 7 ml. of 30% hydrogen peroxide solution. The mixture is heated gently, in this case 75+2° is preferred and kept overnight, during which time another 9 ml. of hydrogen peroxide is added in 6 cc. and 3 ml. portions. After cooling, solid sodium bisulfite is added in small portions as needed to destroy the excess peroxide, the mixture is concentrated to ca. one-half the volume, 75 ml. of water is added, the mixture concentrated to ca. one-third the original volume, 100 ml. of water added, and the mixture concentrated to dryness. The oil remaining is dissolved in 150 ml. of chloroform, solid anhydrous sodium carbonate is added until the mixture is basic to pH paper, the mixture is filtered, the chloroform solution boiled down to ca. 45 ml. and petroleum ether slowly added, with swirling of the chloroform solution to a volume of ca. 250 ml. The white solid that precipitates is filtered, washed with petroleum ether and dried to give 8.4 g. 3-o-chlorophenylpyridine-N-oxide, m.p. 118-123°, I.R. 8.26μ. This material is used without further purification in part 3B.
B. Similarly, when the 3-o-chlorophenylpyridine in the above reaction is replaced by the other 3- or 4phenyl-pyridines prepared in Example 1, the corresponding N-oxides are obtained.
C. Similarly, when 4-phenylpyridine, 4-(p-tolyl)pyridine, 4-(i-propylphenyl)-pyridine, 4-(3-biphenylyl)pyridine, 4-(p-chlorophenyl)-pyridine, 4-(p-bromophenyl)pyridine, 4-(o-methoxyphenyl)-pyridine, 4-(m-methoxyphenyl)pyridine, 4-(p-methoxyphenyl)-pyridine, 4-(p-ethoxyphenyl)
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<img file="IL31133A_D0008.tif" />
pyridine, 4-(ο-, m- or p-nitrophenyl)-pyridine, are used in the procedure of part (A), the corresponding 4-phenylpyridine oxides are obtained.
EXAMPLE 3
A. 3-Phenylpyridine-N-oxide (9.2 g.) and 25 ml. of acetic anhydride are heated in an oil-bath to 153°C., (bath temperature), under a nitrogen atmosphere, the stirred mixture kept eleven hours at this temperature, allowed to cool to room temperature, and the dark mixture added slowly to a stirred ice-water mixture (250 ml.) covered with ca. 50 ml. of ether. After solidification of the oily mixture occurs, the solid is filtered, washed well with water and ether, and dried to give 7.7 g. of tan, nearly pure solid. Recrystallization from dimethylsulfoxide followed by recrystallization from chloroform (darco) yields white crystals, m.p. 225-227°C., of 3-phenyl2[1H]-pyridone.
B. 3-(o-Chlorophenyl)-pyridine-N-oxide (4.1 g.) and acetic anhydride (10 ml.) are heated, under nitrogen, in an oil bath to 146+2° (bath temperature) and maintained on this temperature for ca. eleven hours. On cooling, the mixture is added to a stirred ice-water mixture (80 ml.), and the resultant oil taken up in chloroform. The chloroform is removed in vacuo, the residue dissolved in 60 ml. methanol, 7 ml., water and 2 ml. saturated aqueous sodium bicarbonate added, the mixture refluxed ca. 15 minutes, the mixture made neutral with 2.5 N hydrochloric acid, the solvents removed, and the residue partitioned between chloroform-water. The chloroform layer is dried, stripped
11,.755 of solvent, and the residue recrystallized from benzene to yield 635 mg. white 3-(o-chlorophenyl)-2-[1H]-pyridone,
m.p. 203.5-207°.
C. Alternately, the acetic anhydride may be stripped in vacuo directly and the methanol-bicarbonate treatment used immediately.
D. When the substituted pyridine oxides from
Example 2 are used in place of 3-(o-chlorophenyl)-pyridine oxide in the above reaction, the corresponding 2[1H]- pyridones:
3-(0-, m- and p-methylpheny])-2 [1H]-pyridines,
3-(m- and p-chlorophenyl)-2[1H]-pyridones,
3-(0-, m- and p-methoxyphenyl)-2[1H]-pyridones,
3-(0-, m- and p-cyanophenyl)-2[1H]-pyridones,
3-(0-, m- and p-nitrophenyl)-2[1H]-pyridones,
3-(0-, m- and p-fluorophenyl)-2[1H]-pyridones,
3-(0-, m- and p-trifluoromethylphenyl)-2[1H]-pyridones,
3-a- and β-naphthyl-2[1H]-pyridones,
3-(o,m-dimethylphenyl)-2[1H]-pyridone,
3-(m,p-dimethylphenyl)-2[1H]-pyridone,
3-(0,0'-dimethylphenyl)-2[1HJ-pyridone,
3-(o,p-dimethylphenyl)-2[1H]-pyridone,
3-(m,m'-dimethylphenyl)-2[1H]-pyridone,
3-(o,m<sup>1</sup>-dimethylphenyl)-2[1H]-pyridone, the corresponding dichloro and dimethoxy phenyl pyridones,
3-(0-, m- and p-biphenylyl)-2[1H]-pyridones,
3-(2'-thienyl)-2[1H]-pyridone,
3-(2'-furyl)-2[1H]-pyridone,
3-(3 ’-furyl)-2’[1H]-pyridone,
3-(2’-thiazolyl)-2[1H]-pyridone,
1-1,751
<img file="IL31133A_D0009.tif" />
3-(4<sup>1</sup>-thiazolyl)-2[1H]-pyridone,
3- (5'-thiazolyl)-2[1H]-pyridone, 6-methyl-3-phenyl-2[1H]-pyridone,
5- methyl-3-phenyl-2[1H]-pyridone,
4- methyl-3-phenyl-2[1H]-pyridone,
6,5- and 4-chloro-3-pheny1-2[1H]-pyridones,
6,5- and 4-methoxy-3-pheny1-2[1H]-pyridones,
6,5- and 4-nitro-3-phenyl-2[1H]-pyridones,
6,5- and 4-ethoxy-3-pheny1-2[1H]-pyridones,
6- and 4-ethyl-3-phenyl-2[1H]-pyridones,
6- and 4-phenethy1-3-pheny1-2[1H]-pyridones,
6-fluoro-3-phenyl-2[1H]-pyridone,
6- and 4-methylsulfonyl-3-phenyl-2 [III]-pyridones, 6-phenylsulfonyl-3-phenyl-2[1H]-pyridone,
5- chloro-6-phenoxy-3-phenyl-2[1H]-pyridone,
6- methoxy-4-methyl-3-phenyl-2[1H]-pyridone,
4-methyl-3,5-diphenyl-2[1H]-pyridone, and the corresponding 3-substituted-phenyl derivativesof the above compounds are obtained.
E. In the above cases, the inductive effects of the substituents on the phenyl and pyridine rings help determine the course of the rearrangement, and in some cases some of the corresponding 5-phenyl-2 [III]-pyridones are obtained. The isomers are separated by recrystallization and column chromatography techniques.
EXAMPLE 4
A. 2-Methyl-5-phenylpyridine-N-oxide (1 g.), phosphorous pentachloride (1.2 g.) and dry chloroform (10 ml.) are refluxed on the water-bath for 1 hour. Ice is added to the cooled solution, which is then basified
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L‘ * with potassium carbonate. The chloroform layer is separated, dried (CaC^) , and concentrated to yield crude
2- chloro-3-phenyl-6-methylpyridine.
B. Basic hydrolysis of this compound yields 6-methyl-3-phenyl-2[1H]-pyridone.
I EXAMPLE|5 3-Phenyl-3,4,5,6-tetrctjhydro-2-pyridone (1 g.) and i
30% Pd/C (0.5 g.) are mixed intimately, covered with a nitrogen atmosphere and placed in a metal-bath set at 270°C. The mixture is kept 8 hours, cooled, the residue extracted several times with boiling chloroform, the solvent removed and the residue chromatographed on a silica gel column using an acetone-ether (<sup>V//</sup>vO-50%) system as eluant, yielding
3- phenyl-2[1H]-pyridone.
EXAMPLE l-Methyl-3-phenyl-2[1H]-pyridone
A. To a stirred suspension of 0.87 grams of 50% NaH (0.018M) is added at 5° under nitrogen 3.08 grams (0.018M) of 3-phenyl-2[1H]-pyridone. The reaction is allowed to stir for 1/2 hour at room temperature and is then cooled to 5° and 2.84 grams (0.020M) of methyl iodide is added. The reaction mixture is stirred for 3 hours at room temperature and is then concentrated in vacuo. The residue is extracted between methylene chloride and water containing a little hydrochloric acid. The combined methylene chloride extracts are dried over sodium sulfate and concentrated. The residue is recrystallized from methylene chloride and hexane to give 1.9 grams of 1-methyl3-pheny1-2[1H]-pyridone, m.p. 135-7°.
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B. Similarly, when other alkyl halides such as ethyl bromide, butyl bromide, propyl bromide, etc. are used in place of methyl iodide in the above example, the corresponding l-alkyl-3-phenyl-2[1H]-pyridones are obtained.
C. Similarly, when allyl bromide, methallychloride and crotyl chloride are used in place of methyl iodide in the above example, there is obtained l-allyl-3phenyl-2[1H]-pyridone, 1-(methallyl)-3-phenyl-2[1H]pyridone and l-crotyl-3-phenyl-2[1H]-pyridone.
D. When benzyl chloride, o-chlorobenzyl chloride, m-chlorobenzyl chloride, p-chlorobenzyl chloride, o-methylbenzyl chloride, m-methy!benzyl chloride, p-methylbenzyl chloride, o-fluorobenzyl chloride, m-fluorobenzyl chloride, p-fluorobenzyl chloride, o-methoxybenzyl chloride, m-methoxybenzyl chloride, p-methoxybenzyl chloride, pentafluorobenzyl bromide, 3,4-dichlorobenzyl chloride or
3,4-dimethoxybenzyl chloride is used in place of methyl iodide, the corresponding 1-arylmethyl-3-phenyl-2[1H]pyridones are obtained.
E. When cinnamyl bromide is used in place of methyl iodide, there is obtained l-cinnamyl-3-phenyl-2[1H]pyridone.
F. When propargyl bromide is used in place of methyl iodide, there is obtained l-propargyl-3-phenyl-2[1H]pyridone.
G. When methyl iodide is replaced in the above procedure by 2-chloroethylamine, N-methyl-2-chloroethylamine, Ν,Ν-dimethyl-2-chloroethylamine, N-ethyl-2-chloroethylamine, N,N-diethyl-2-chloroethylamine, N-(2-chloroethyl)-piperidine or 3-chloropropylamine, the corresponding l-substituted-3-phenyl-2[1H]-pyridone is obtained.
11,755 ►
H. When methyl iodide is replaced with chloracetone, l-chloropropan-2-one and phenacyl chloride in the above procedure, the corresponding l-acylmethyl-3-phenyl2[1H]-pyridone is obtained.
I. When methyl iodide is replaced with 2-bromoethanol or 2-bromopropanol in the above procedure, the corresponding 1-hydroxyalky1-pyridone is obtained.
EXAMPLE 7
A mixture of 0.02 moles of 3-phenyl-2[1H]-pyridone and 0.02 moles of acrylonitrile is warmed with 0.1 gram of solid sodium hydroxide on a steam bath until reaction occurs. When the exothermic reaction subsides, the reaction mixture is heated on the steam bath for one hour, then cooled. The residue is taken up in chloroform, washed with water and the chloroform extract dried over sodium sulfate and concentrated. Chromatography of the residue on 400 grams of silica gel and elution with ether-petroleum ether (0-70%) gives l-(2-cyanoethyl)-3-phenyl-2[1H]-pyridone.
EXAMPLE
A. Sodium 3-phenyl~pyridone
To a suspension of 0.87 grams of 50% NaH (0.018 m.) in 100 mis. of dry benzene is added 3.08 grams (0.018 m.) of 3-pheny 1-2 [III]-pyridone. The reaction mixture is heated at 35°C. for 6 hours and allowed to stir at room temperature overnight. The benzene was then evaporated in vacuo leaving a residue of sodium 3-pheny1-pyridone.
B. 1,3-Diphenyl-2[1H]-pyridone
The sodium 3-pheny1-pyridone from above (0.018 m.), 6.04 grams of iodo benzene (0.032 m.) and 0.19 grams of
11.,755 copper (0.003 m.) are mixed with mechanical stirring and heated at 155° under nitrogen for six hours. The reaction mixture is allowed to cool to room temperature overnight and the mixture then extracted well with chloroform. The chloroform extracts are washed with water, dried over sodium sulfate and concentrated. Chromatography of the residue on 500 grams of silica gel and elution with ether- petroleum ether (0-75%) gives 1,3-diphenyl-2[1H]-pyridone.
C. Similarly, when substituted iodo benzenes, ex.
2-iodonitrobenzene, 3-iodonitrobenzene-4-iodonitrobenzene are used in place of iodo benzene in the above example, the corresponding !-(substituted aryl)-3-phenyl-2[1H]-pyridones are obtained.
EXAMPLE 9
3-Phenyl-l-(2’-quinolyl)-2[1H]-pyridone
A, 2-Bromo-3-phenyl-pyridine
A mixture of 0.1 moles of 3-phenyl-2[1H]-pyridone
18. and 0.15 moles of phosphorous tribromide are heated for
3 hours at 180°. The reaction mixture is cooled, decomposed in ice water, made alkaline with sodium hydroxide and extracted well with ether. The combined ether extracts are dried over sodium sulfate and concentrated in vacuo to yield 2-bromo-3-phenyl-pyridine.
B. 3-Phenyl-l (2 <sup>1</sup>-quinolyl) -2 [III] -pyridone
A mixture of 0.02 moles of quinoline-N-oxide and 0.022 moles of 2-bromo-3-phenyl-pyridine are heated on the steam bath for 8 hours. The reaction mixture is cooled, taken up in water containing a little hydrochloric acid and washed with ether. The aqueous layer is made alkaline with potassium carbonate solution and extracted well with
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<img file="IL31133A_D0010.tif" />
chloroform. The combined chloroform extracts are dried over potassium carbonate and concentrated to yield 3phenyl-1- (2 '-quinolyl)-2 [1H] -pyridone.
C. Similarly, when 2-picoline-N-oxide, 3picoline-N-oxide or 4-picoline-N-oxide is used in place of quinoline-N-oxide in the above procedure, there is obtained 3-phenyl-l-[2(6<sup>,</sup>-methylpyridyl)]-2[1H]-pyridone, 3-phenyl-l-[2<sup>1</sup>-(5'-methylpyridyl)]-2[1H]-pyridone, and 3phenyl-1-[2’-(4'-methylpyridyl)]-2[1H]-pyridone.
EXAMPLE 10
A solution of chloramine is prepared by treating at 0°C. 65 ml. of a 1.93 m. neutral sodium hypochlorite solution (0.125 m.) with 20 mis. of 1.84 m. NH.OH (0.375 m.). The above mixture is allowed to stand for one hour in an ice-salt bath and then 0.125 m. of sodium 3-phenyl-pyridone is added. The reaction mixture is stirred overnight at 0-10°C. and is then continuously extracted with ether for 24 hours. The ether extracts are dried over sodium sulfate and concentrated to yield 1-amino-3-phenyl-2[1H]-pyridone.
EXAMPLE
1-Hydroxy-3-phenyl-2[1H]-pyridone
A. 2-Chloro-3-phenyl-pyridine-N-oxide
0.2 Moles of 2-chloro-3-phenyl-pyridine is treated with 25 mis. of glacial acetic acid and 22 mis. of 40% peracetic acid. The temperature of the reaction mixture is kept at 70°C. for 3 hours. The reaction mixture is concentrated, extracted with chloroform and the chloroform extracts concentrated to yield 2-chloro-3-phenylpyridine-Noxide.
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Β. 0.01 Moles of 2-chloro-3-phenyl-pyridine-Noxide and 20 mis. of acetic anhydride are heated for 3 hours at 130-140°. The reaction mixture is then concentrated in vacuo to yield crude l-hydroxy-3-phenyl-2[1H]pyridone.
EXAMPLE 12
A. A mixture of 0.02 moles of 3-phenyl-2[1H]pyridone and 0.025 moles of phosphorus pentasulfide is heated for 6 hours at 160°C. The reaction mixture is then poured into 100 ml. of hot whter, cooled and the 3-phenyl-
2-[1H]-thiopyridone collected by filtration. Chromatography on 400 gm. of silica gel and elution with ether-petroleum ether (0-90%) gives 3-phenyl-2[1H]-thiopyridone. M.p. 229-237’.
B. Similarly, when the other substituted pyridines are used in place of 3-phenyl-2[1H]-pyridone in the above example, the corresponding 2 [1H]-thiopyridones are obtained.
EXAMPLE
A. 2-Methoxy-3-pheny!־pyridine
A mixture of 0.01 moles of 2-chloro-3-phenylpyridine, 0.01 moles of sodium methoxide and 50 cc. of dry dimethylformamide are heated at 60° for 2 hours. The reaction mixture is concentrated in vacuo, taken up in chloroform and washed with water. The chloroform extract is dried over sodium sulfate and concentrated. The residue is chromatographed on 250 gms. of silica gel. Elution with ether-petroleum ether (0-75%) gives 2-methoxy-3-phenylpyridine.
ל 5! ;
* .
B. Similarly, when the other substituted 2chloro-3-phenyl-pyridines are used in place of 2־־chloro-3phenyl-pyridine, the corresponding 2-methoxy phenylpyridines are obtained. When other alkoxides such as sodium ethoxide or propoxide, sodium phenolate, sodium o- or p-chlorophenolate or p-methoxyphenolate, sodium alloxide, crotoxide, or methalloxide, sodium propargoxide, sodium benzoxide, chlorbenzoxide or methoxybenzoxide, sodium cinnamoxide׳, sodium 2-aminoethoxide, 2-aminopropoxide, 2-dimethylaminoethoxide, 3-dimethylaminopropoxide, methylaminoethoxide or sodium methoxyethoxide or ethoxypropoxide are used in place of sodium methoxide, such as in the above example, the corresponding alkoxyphenylpyridines are obtained. The alkoxides are prepared by adding 0.01 mole of the alcohol in 20 cc. dry DMF to 0.01 moles of NaH in 30 cc. dry DMF, and stirring 1 hour.
EXAMPLE 14
The procedure of Example 13 is followed except that sodium methyl mercaptide is used instead of sodium methoxide. There is obtained the corresponding 2-methylthio-3-phenyl-pyridine. When other mercaptides such as the sodium salts of benzylmercaptan, o-nitrobenzylmercaptan, mnitrobenzylmercaptan, o-methylbenzylmercaptan, m-methylbenzylmercaptan, p-methylbenzy!mercaptan, 2,4-dimethylbenzylmercaptan, 3,4-dimethylbenzylmercaptan, o-chlorobenzylmercaptan, m-chlorobenzylmercaptan, p-chlorobenzylmercaptan, 2,4-dichlorobenzylmercaptan, 3,4-dichlorobenzylmercaptan, 2,4,5-trichlorobenzylmercaptan, 2-chloro-5nitrobenzylmercaptan, 5-amino-2,4-dichlorobenzy!mercaptan, p-bromobenzylmercaptan, o-bromobenzy!mercaptan, o-amino25
11,755 benzylmercaptan, 3-amino-4-methoxybenzylmercaptan, omethylaminobenzylmercaptan, p-methbxybenzy!mercaptan,
4- methoxy-3-nitrobenzy!mercaptan, 3,4-dimethoxybenzylmercaptan, 3,4-methylenedioxybenzylmercaptan are used in place of the methyl mercaptide, the corresponding 2sulfide is obtained.
EXAMPLE 15
A mixture of 0.01 moles of 1-(2-cyanoethyl)-3phenyl-2[1H]-pyridone, 50 ml. of acetic acid and 50 ml. of 10% sulfuric acid is refluxed for 4 hours. The reaction mixture is then concentrated, poured into water and extracted well with chloroform. The combined chloroform extracts are dried over sodium sulfate and concentrated to give 1-(2-carboxyethyl)-3-pheny1-2[1H]-pyridone.
EXAMPLE 16
A mixture of 0.01 moles of It(2-hydroxyethyl)-3phenyl-2[1H]-pyridone and 25 cc. of concentrated hydrochloric acid is heated in a sealed tube for 60 hours at 120°. The reaction mixture is cooled and then concentrated in vacuo to yield 1-(2-chloroethyl)-3-phenyl-2[1H]-pyridone.
The following examples illustrate the interconversion or introduction of functional groups after preparation of the phenyl pyridone nucleus.
EXAMPLE
5- Chloro-3-phenyl-2[1H]-pyridone
3-Pheny1-2[1H]-pyridone (3.08 g.) and N-chlorosuccinimide (2.7 g.) are refluxed in methylene chloride
11,755 (25 ml.) for 28 hours under a nitrogen atmosphere. Solution gradually occurs. After cooling, the mixture is filtered to remove succinimide, the filtrate diluted with ca. 20 more ml. CI^C^, washed with water (2 x ca. 50 ml.), dried over magnesium sulfate, filtered, concentrated to 3.2 g. tan solid. Recrystallization from benzene (concentrating to ca. 40 ml. hot) yields 815 mg. very pale pink cotton-like crystals, m.p. 157.5-159°, of 5-chloro3־pheny1-2[1H]-pyridone.
EXAMPLE
5-Dimethylamino-3-phenyl-2[1H]-pyridone
5-Chloro-3-phenyl-2[1H]-pyridone (1 g.) in anhydrous dimethylformamide (50 ml.) is saturated with dimethylamine, and the resultant mixture heated in a lined stainless-steel bomb for several hours. The solvent is removed in vacuo, the residue distributed between chloroform and water, the chloroform layer dried, solvent stripped, and the residue chromatographed on a silica gel column using a methanol-methylene chloride eluent (<sup>V/</sup>*vO-100% MeOH) to yield the title compound.
EXAMPLE
3-p-Hydroxyphenyl-2[1H]-pyridone
3-p-Methoxyphenyl-2[1H]-pyridone (2g.) is added to a stirred 10 g. portion of pyridine-hydrochloride at 188°. A dry nitrogen atmosphere is maintained. The mixture is kept 20 minutes, allowed to cool, then added to 45 g. of ice. The crude product is collected, dried and recrystallized to yield the title compound.
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Similarly, when the o- and m-methoxyphenylpyridones are substituted for the p-isomer in the above reaction, the corresponding 0- and m-hydroxy analogs are obtained.
EXAMPLE
3-(p־Aminophenyl)-2[1H]-pyridone
3-(p-Nitrophenyl)-2[1H]-pyridone (1 g.) in warm dioxane (50 ml.) is reduced under a hydrogen atmosphere in the presence of 0.3 g. 5% Pd/C. The mixture is filtered, the cake washed well with warm dioxane, the combined filtrates concentrated to residue, the residue recrystallized to yield title compound.
Alternately, when the dioxane solution is treated with anhydrous ethereal-hydrogen chloride solution, the hydrochloride precipitates. When the corresponding o-, and m-nitrophenyl-pyridones are used in the above reduction the 0- and m-aminophenyl-pyridpnes are obtained.
EXAMPLE
3-(p-Dimethylaminophenyl)-2[1H]-pyridone
3-(p-Nitrophenyl)-2[1H]-pyridone (1g.) in methanol (100 ml.) containing glacial acetic acid (1 ml.) and 37% formaldehyde solution ( 3 ml.) is reduced in the presence of Raney nickel (1/4 tsp.) under a hydrogen atmosphere. The mixture is filtered, the cake washed with methanol, and the combined filtrates concentrated to a residue. Chromatography on an alumina column using a methanol-methylene chloride' system (<sup>v</sup>AzO-100%) yields the title compound.
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When the o- and m-nitro isomers are used in place of the p-isomer in the above reduction, the corresponding o- and m-dimethylaminophenyl-2-pyridones are obtained.
EXAMPLE 22 oyl
3-(p-Carban£dephcnyl)-2[1H]-pyridone
3-(p-Cyanophenyl)-2[1H]-pyridone (5g.) is added to a stirred ice-cold portion of concentrated sulfuric acid (20 g.) and the mixture stirred overnight, added to icewater, the crude product collected, dried and recrystallized to yield the title compound. When the o- and m-cyanophenylpyridones are used in the above reaction, the corresponding 0- and m-carbamidophenyl isomers are obtained.
EXAMPLE
3-(p-Carboxyphenyl)-2[1H]-pyridone
3-(p-Cyanopheny1-2[1H]-pyridone (1 g.) in 30 ml. of a 1:1 mixture of glacial acetic acid - 20% hydrochloric acid is heated for twelve hours, the solvent removed in vacuo, the residue partitioned between chloroform and nearly saturated sodium bicarbonate solution, the bicarDonate solution filtered and acidified, the precipitate collected, dried and recrystallized to yield the title compound.
When the o- and m-cyanophenyl-pyridones are used in the above reaction, the corresponding o- and m-carboxyphenyl isomers are obtained.
EXAMPLE l-Methyl-3-phenyl-2[1H]-pyridone-5-sulfonic acid
When 1-methyl-3-pheny 1-2 [1H]-rpyridone is treated with chlorosulfonic acid according to the procedure of
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<img file="IL31133A_D0011.tif" />
German Patent 601,896, there is obtained l-methyl-3phenyl-2[1H]-pyridone-5-sulfonic acid.
EXAMPLE 3-Phenyl-5-triphenylmethyl-2[1H]-pyridone 3-Phenyl-2[1H]-pyridone (3g.) and trityl chloride (3 g.) are intimately mixed and heated at ca. 250° in a metal-bath for 30 minutes, the reaction mixture cooled, and 60 ml. of boiling ethanol added, the solid filtered, washed with fresh ethanol, and recrystallized to give the title compound.
EXAMPLE
5-Amino-3-phenyl-2[1H]-pyridone
When 5-nitro-3-pheny1-2[1H]-pyridone is reduced under the conditions described in Example 20 above, the title compound is obtained.
When the 4- and 6-nitro isomers are used in place of the 5-nitro compound, the corresponding 4- and 6-amino3-phenyl-2[1H]-pyridones are obtained.
EXAMPLE
5-Din1ethylaminomethyl-3-phenyl-2 [1H] -pyridone 5-Methyl-3-phenyl-2[1H]-pyridone (0.01 m.) and N-bromosuccinimide (0.01 m.) in carbon tetrachloride (250 ml.) are refluxed under irradiation for ca. 15 mins, (occasionally a trace of benzoyl peroxide is necessary to initiate reaction), cooled, filtered, and the filtrate concentrated in vacuo to a residue.
The residue is taken up in dimethylformamide, dimethylamine added, the vessel sealed and heated, the
11,755 solvent removed in vacuo, and the residue chromatographed on an alumina column using a methanol-methylene chloride system (<sup>V/׳</sup>v 0-100%) as eluent to yield the title compound.
Similarly, when the corresponding 4- and 6methyl isomers are used in the above process, the corresponding 4- and 6-dimethylaminomethyl isomers are obtained.
EXAMPLE
3-(p-Mercaptophenyl)-2[1H]-pyridone
The title compound is prepared from 3- (p-aminophenyl)-2[1H]-pyridone via the procedure of Tarbell & Fukushima for thiocresol (Org. Syn., Coll. Vol. Ill, p. 809), but using chloroform as the organic extractant, omitting the 10% sodium hydroxide wash, and hydrolyzing the intermediate thiocarbonate under milder conditions. The mixture is then acidified, the solvent removed in vacuo, and the residue recrystallized, using deaerated solvents to avoid disulfide formation.
When the o- and m-aminophenyl isomers are used in place of the p-isomer in the above reaction, the corresponding o- and m-mercapto isomers are obtained.
EXAMPLE p-(2[1H]-Pyridon-3-yl)-benzenesulfonic acid
The procedure employed by Wallace (Tetrahydron Letters (1963) 1131) for benzene sulfonic acid is used.
3-(p-Mercaptophenyl-2[1H]-pyridone is stirred at room temperature in dimethylformamide containing potassium hydroxide (1.3 M.) under a partial oxygen atmosphere (1 atm.) for 24 hours. The mixture! i.H nc.i 1.1 ז. Γ.Ι <׳<d, 1:11«! solvent removed in vacuo, and the residue recrystallized to yield p-(2 [1H]-pyridon-3-yl) benzene sulfonic acid.
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Similarly, when the 0- and m-mercaptophenyl isomers are used in the above procedure, the corresponding 0- and m-sulfonic acids are obtained.
EXAMPLE p-(2 Qjf| -Pyridon-3-yl)-benzenesulfonamide p-(2[lH]-Pyridon-3-yl)-benzenesulfonic acid (0.005 m.) is added to thionyl chloride (JO ml.) containing one drop of dimethylformamide. The mixture is stirred overnight at room temperature, the excess thionyl chloride removed in vacuo, dry benzene added, removed in vacuo, and the residue pumped out to remove all traces of thionyl chloride. The acid chloride is then taken up in anhydrous ether and added to an aquerous solution containing two equivalents of ammonia, allowed to stir for several hours, the product collected, dried, and treated as in Example hB above to hydrolyze any 2-chloro derivative present. Recrystallization yields p-(2[lH]-pyridon-3-yl)-benzenesulfonamlde.
When the 0- and m-sulfonic acid isomers are used in the above reaction, the corresponding 0- and m-sulfonamides are obtained.
When methylamine, dimethylamine or aniline is used in place of <
ammonia in the above reaction, the corresponding N-substituted sulfonamldes are obtained.
EXAMPLE
2-Acetoxy-3-phenyl-pyridine
A mixture of 0.01 moles of 3-phenyl-pyridine-N-oxide is refluxed for 12 hours in $0 cc. of acetic anhydride. Concentration of the reaction mixture in vacuo yields 2-acetoxy-3-phenyl-pyridine. .
EXAMPLE l-Benzamido-3~phenyl-2 D-Η] -pyridone
A. To a mixture of 0.01 moles of l-amlno-3-phenyl-2-i.lH jpyridone and 5.0 grams of anhydrous potassium carbonate in 100 mis. of chloroform is added portionwise with stirring 0.01 moles of benzoyl chloride. The reaction mixture is stirred for 4 hoars at reflux, then cooled and filtered. The filtrate is concentrated in vacuo to yield l-benzamido-3-phenyl-2ijJL)“pyridone,
B. When acetyl chloride is used in place of benzoyl chloride in the above example, there is obtained l-acetamido-3-phenyl-2-[jLH]pyridone.
C. When carbobenzoxy chloride is used in place of benzoyl chloride in the procedure of part (A), l»carbobenzoxyamino-3-phenyi 2L1H3—pyridone is obtained.
D. When ethyl chloroformate is used in place of benzoyl chloride in the procedure of part (a), l-carbethoxyamino-3-phenyl2[ΪΗ]-pyridone is obtained.
E. A mixture of 0.01 moles of l-amino-3-phenyl-2 jlH]pyridone and 0.01 moles of benzaldehyde is refluxed for 3 hours in 30 mis. of ethanol. The reaction mixture is then concentrated to yield l-benzylidineamino-3-phenyl-2[ΪΗ]-pyridone.
F. To 0.01 moles of l-amino-3-phenyl-2[I!{]-pyridone in 100 mis. of anhydrous ether is added 0.01 moles of phenylisocyanate. The reaction mixture is refluxed for one hour, then concentrated to yield 1-(Ν'-phenylureido)-3-phenyl-2[1h]-pyridone.
EXAMPLE
3-(p-Methylsulfinylphenyl)-2(1¾]-pyridone
3-(p-Methylmercaptophenyl)-2[lH]-pyridone (0.001 mole) is stirred in methanol (50 ml.) and sodium metaperiodate (0.001 moles), dissolved in a minimum of water, is added. The mixture
11,755 is stirred at room temperature for several days and then filtered. The filtrate is concentrated in vacuo and partitioned between chloroform and water. The chloroform layer is dried over sodium sulfate and the chloro- form is removed in vacuo. The residue is recrystallized to yield the above compound.
When the 0- and m-methylmercaptophenyl-pyridones are used in the above process, the corresponding 0- and m-methylsulfinylphenyl- fl pyridones are obtained.
EXAMPLE 34
3-(p־Methylsulfonylphenyl)-2 Q.H] -pyridone
To 3־(p־Methylmercaptophenyl)-2[lH]-pyridone (1 g.) in glacial acetic acid (25 ml.) is added 30$ aqueous hydrogen peroxide (2 ml.), and the resultant mixture is allowed to stir several days at room temperature.
A minimum of sodium bisulfite is added to destroy the excess peroxide.
The solvent is removed in vacuo and the residue is recrystallized to give the above compound.
When the 0- and m-methylmercaptophenyl-pyridoneg are used in the above process, the corresponding 0- and m-methylsulfonylphenyl-
2[lH]-pyridones are obtained.
EXAMPLE 35
The testing procedures used are essentially those of 1) Winter, et al, Proc. Soc. Expor. Riol. Ill (1962), p. 544 (Cnrrogeenin-induced
Foot inflammation); 2) 'H.oerk et, al, Am. J. !<sup>1</sup>at-tiol. 10 (.1954), p. 616 (Adjuvant Arthritis I); and 3) Newbould, Brit. J. Phannacal. 24 (196^),
p. 632 (Adjuvant Arthritis-Π).
1.1,755
<td> 1</td><td> For Example«</td>
<td> 2</td><td> (Dosage in Mg./Kg. Body Weight)</td>
<td> 3</td><td> Compound Carrogeenin Proc« Adj. Arthr. I Adj. Arthr. II</td>
<td> 4</td><td> % % %</td>
<td> $</td><td> Dose Inhibition Dose Inhibit. Dose Inhibit.</td>
<td></td><td></td>
<td> 6</td><td> 3-Phenyl-</td>
<td> ד</td><td> 2&h|- _ . .</td>
<td> 8</td><td> pyridone 10 38 12.5 “ 51*3 12.5 <sup>a</sup> 56.9</td>
<td> 9</td><td> b-Phenyl-</td>
<td> 10</td><td> ?M־ </td>
<td> 11</td><td> pyridone 100 >* _5b.7 12.,5 55 ״</td>
Contents28
27 sheets
Sheet 1 Sheet 2 Sheet 3 Sheet 4 Sheet 5 Sheet 6 Sheet 7 Sheet 8 Sheet 9 Sheet 10 Sheet 11 Sheet 12 Sheet 13 Sheet 14 Sheet 15 Sheet 16 Sheet 17 Sheet 18 Sheet 19 Sheet 20 Sheet 21 Sheet 22 Sheet 23 Sheet 24 Sheet 25 Sheet 26 Sheet 27
23 members in 10 offices
Priority claims4
| Document | Office | Kind | Date |
|---|---|---|---|
| 68710167 | United States of America | A | |
| 68710167 | United States of America | A | |
| 687101 | – | – | – |
| US19670687101 | – | – | – |
Members23
| Document | Office | Kind | |
|---|---|---|---|
| IL31133A0 | Israel | A0 | |
| BE724667A | Belgium | A | |
| NL6816241A | Netherlands (Kingdom of the) | A | |
| NL6816241A | Netherlands (Kingdom of the) | A | |
| DE1810822A1 | Germany | A1 | |
| FR1593806A | France | A | |
| ES360540A1 | Spain | A1 | |
| FR8423M | France | M | |
| GB1238959A | United Kingdom | A | |
| GB1238960A | United Kingdom | A | |
| AT295533B | Austria | B | |
| AT296987B | Austria | B | |
| ES379033A1 | Spain | A1 | |
| ES379034A1 | Spain | A1 | |
| IL31133AThis record | Israel | A | |
| BR6804345D0 | Brazil | D0 | |
| US3715358A | United States of America | A | |
| AT306016B | Austria | B | |
| AT306017B | Austria | B | |
| US2015378738A1 | United States of America | A1 | |
| US2015378739A1 | United States of America | A1 | |
| US9477481B2 | United States of America | B2 | |
| US10055230B2 | United States of America | B2 |
Numbers
- Publication, DOCDB
- 31133
- Publication, EPODOC
- IL31133
- Application
- 31133
- Application, DOCDB
- 3113368
- Application, EPODOC
- IL19680031133
Titles
- English
- NEW PYRIDONE AND PYRIDINE DERIVATIVES,THEIR PREPARATION AND PHARMACEUTICAL COMPOUNDS CONTAINING THEM
Classification
- IPC, 2
- A61K
- C07D
