IL229509A

Methods of preparing monodisperse oligo(ethylene glycol) containing compositions

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5 claims: 2 independent, 3 dependent

  1. 1
    229,509/3 - 76 - WHAT IS CLAIMED IS:1. A method of preparing a monodisperse oligo(ethylene glycol) reagent composition, said method comprising reacting a halo-terminated oligo(ethylene glycol) having (m) monomer subunits with and a methoxy-capping group with a first hydroxyl-terminated oligo(ethylene glycol) having (n) monomer subunits, wherein the first hydroxyl-terminated oligo(ethylene glycol) structure is HO-(CH2CH2O)n-H, under conditions effective to displace said halo group to thereby form an oligo(ethylene glycol) having (m) + (n) monomer subunits (OEGm+n), where the OEGm+n has a terminal hydroxyl group, and where the reacting the halo terminated oligo(ethylene glycol) with the first hydroxyl-terminated oligo(ethylene glycol) comprises adding a 1:1 molar ratio of the halo terminated oligo(ethylene glycol) to the first hydroxyl-terminated oligo(ethylene glycol) in a solution;converting the terminal hydroxyl group of OEGm+n into a halo group, -X, to form OEGm+n-X;and reacting OEGm+n-X with a second hydroxyl-terminated oligo(ethylene glycol) having (n) monomer subunits, where the second hydroxyl-terminated oligo structure is HO-(CH2CH2O)n-H, under conditions effective to displace said halo group to thereby form an oligo(ethylene glycol) having (m) + 2(n) monomer subunits (OEGm+2n), where reacting the OEGm+n-X with the second hydroxyl-terminated oligo(ethylene glycol) comprises adding a 1:1 molar ratio of the OEGm+n-X to the second hydroxyl-terminated oligo(ethylene glycol) in a solution;where (m) and (n) each independently range from 1-10, and where (OEGm+2n) corresponds to the structure CH3O(CH2CH2O)m+2nH, and is present as part of a monodisperse composition of CH3O(CH2CH2O)m+2nH.
  2. 2
    A method of preparing a monodisperse oligo(ethylene glycol) reagent composition, comprising:reacting a halo-terminated oligo(ethylene glycol) having (m) monomer subunits and a methoxy end-capping group with a first hydroxyl-terminated oligo(ethylene glycol) having (n) monomer subunits, wherein the first hydroxyl-terminated oligo(ethylene glycol) structure is HO-(CH2CH2O)n-H, under conditions effective to displace said halo group to thereby form an oligo (ethylene glycol) having (m) + (n) monomer subunits (OEGm+n), where the OEGm+n has a terminal hydroxyl group, and where reacting the halo-terminated 229,509/3 -π - oligo(ethylene glycol) with the first hydroxyl-terminated oligo(ethylene glycol) comprises adding a 1:1 molar ratio of the halo-terminated oligo(ethylene glycol) to the first hydroxyl-terminated oligo(ethylene glycol) in a solution;converting the terminal hydroxyl group of OEGm+n into a halo group, -X, to form OEGm+n-X;reacting OEGm+n-X with a second hydroxyl-terminated oligo (ethylene glycol) having (n) monomer subunits under conditions effective to displace said halo group to thereby form an oligo (ethylene glycol) having (m) + 2(n) monomer subunits (OEGm+2n), where the OEGm+2n possesses a primary hydroxyl group and where reacting the OEGm+n-X with the second hydroxyl-terminated oligo (ethylene glycol) comprises adding a 1:1 molar ratio of the OEGm+n-X to the second hydroxyl-terminated oligo(ethylene glycol) in a solution;converting said primary hydroxyl group into a halo group, -X, to form OEGm+2n-X;and reacting OEGm+2n-X with a third hydroxyl-terminated oligo (ethylene glycol) having (n) monomer subunits under conditions effective to displace said halo group to thereby form an oligo (ethylene glycol) having m + 3n monomer subunits (OEGm+3n), where reacting the OEGm+2n-X with the third hydroxyl-terminated oligo(ethylene glycol) comprises adding a 1:1 molar ratio of the OEGm+2n-X to the third hydroxyl-terminated oligo (ethylene glycol) in a solution;where (m) and (n) each independently range from 1-10;and wherein (OEGm+3n) corresponds to the structure CH3O(CH2CH2O)m+3nH, and is present as a monodisperse composition of CH3O(CH2CH2O)m+3nH.