Claims
- 1. A polymer comprising one or more pendent aryl boronate ester groups represented by a structural formula selected from:
- 2. The polymer of claim 1 wherein each Z is —O—
- 3. A polymer comprising one or more pendent phenyl boronate ester groups represented by a structural formula selected from:
- 4. The polymer of claim 3 wherein Phenyl Ring A is substituted with one or more electron withdrawing groups.
- 5. The polymer of claim 4 wherein the pendent phenyl boronate ester groups are represented by a structural formula selected from:
- 6. The polymer of claim 4 wherein X is —CHD—, —CD2—, —COO—, —CONH—, —CO—, —S(O)—, —S(O)2O— or —SO2—; Phenyl Ring B is optionally substituted with one or more electron withdrawing groups; D is a halogen; and R is a straight chained hydrocarbyl group with an ether or thioether linkage and is optionally substituted at the terminal position with an amine, halogen, —CF3, thiol, ammonium, alcohol, —COOH, —SO3H, —OSO3H or phosphonium group.
- 7. The polymer of claim 6 wherein X is —CHD—, —CD2—, —COO—, —CONH—, —CO— or —SO2—.
- 8. The polymer of claim 4 wherein X is —CHD—, —CD2—, —COO—, —CONH—, —CO— or —SO2—; Phenyl Ring B is optionally substituted with one or more electron withdrawing groups; D is a halogen; and R is a straight chained hydrocarbyl group with an ether or thioether linkage and is substituted at the terminal position with —[NH—(CH2)q]r—NH2), wherein q is an integer from 2 to about 10 and r is an integer from 1 to about 5, provided that one or more of the secondary amines in —[NH—(CH2)q]r—NH2) are optionally N-alkylated or N,N-dialkylated and the primary amine in —[NH—(CH2)q]r—NH2) is optionally N-alkylated, N,N-dialkylated or N,N,N-trialkylated.
- 9. A polymer comprising one or more pendent phenyl boronate ester groups represented by the following structural formula:
- 10. The polymer of claim 9 wherein Phenyl Ring B is optionally substituted with one more electron withdrawing groups; R is a straight chained hydrocarbyl group optionally comprising an ether or thioether linkage; and R is substituted at the terminal position with an amine, halogen, —CF3, thiol, ammonium group, alcohol, —COOH, —SO3H, —OSO3H or phosphonium group.
- 11. The polymer of claim 10 wherein R is a straight chained hydrocarbyl group comprising an ether or thioether linkage and substituted at the terminal position with an ammonium group.
- 12. The polymer of claim 10 wherein R is a straight chained hydrocarbyl group comprising an ether or thioether linkage and substituted at the terminal position with a trialkyl ammonium group.
- 13. The polymer of claim 10 wherein R is a straight chained hydrocarbyl group comprising an ether or thioether linkage and substituted at the terminal position with a trimethyl ammonium group.
- 14. The polymer of claim 9 wherein Phenyl Ring B is optionally substituted with one more electron withdrawing groups; R is a straight chained hydrocarbyl group with an ammonium linkage and optionally substituted at the terminal position with an amine, halogen, —CF3, thiol, ammonium group, alcohol, —COOH, —SO3H, —OSO3H or phosphonium group.
- 15. The polymer of claim 9 wherein Phenyl Ring B is optionally substituted with one more electron withdrawing groups; R is a straight chained hydrocarbyl group with an ammonium linkage.
- 16. The polymer of claim 9 wherein Phenyl Ring B is optionally substituted with one more electron withdrawing groups; R is a straight chained hydrocarbyl group substituted at the terminal position with an amine, halogen, —CF3, thiol, ammonium group, alcohol, —COOH, —SO3H, —OSO3H or phosphonium group.
- 17. The polymer of claim 16 wherein R is a straight chained hydrocarbyl group substituted at the terminal position with an ammonium group.
- 18. The polymer of claim 16 wherein R is a straight chained hydrocarbyl group substituted at the terminal position with a trialkyl ammonium group.
- 19. The polymer of claim 5 wherein —XR is —C(O)CH2— O[—(CH2)pO]m—(CH2)p—Y or —C(O)CH2—S[—(CH2)pO]m—(CH2)p—Y, p is 2 or 3, m is an integer from 1-5 and Y is an ammonium group.
- 20. The polymer of claim 9 wherein the phenyl boronate ester groups are represented by the following structural formula:
- 21. The polymer of claim 20 wherein Y is a trialkylammonium group.
- 22. The polymer of claim 21 wherein Y a trimethylammonium group.
- 23. The polymer of claim 9 wherein the phenyl boronate group is connected directly to the polymer backbone.
- 24. The polymer of claim 23 wherein the polymer is polyvinyl alcohol or a polysaccharide.
- 25. The polymer of claim 9 wherein the polymer is a fat-binding polymer.
- 26. The polymer of claim 25 wherein the polymer is cationic.
- 27. The polymer of claim 25 wherein the polymer is a synthetic polyamine.
- 28. A polymer comprising phenyl boronate functionalized monomer, said monomer comprising a moiety W represented a structural formula selected from:
- 29. A polymer comprising phenyl boronate functionalized monomer, said monomer comprising a moiety W represented a structural formula selected from:
- 30. The polymer of claim 29 wherein R10 is —H.
- 31. The polymer of claim 30 wherein Phenyl Ring B is optionally substituted with one or more additional electron withdrawing groups and R is a straight chained hydrocarbyl group comprising an ether or thioether linkage and substituted at the terminal position with an amine, halogen, —CF3, thiol, ammonium group, alcohol, —COOH, —SO3H, —OSO3H or phosphonium group.
- 32. The polymer of claim 31 wherein R is a straight chained hydrocarbyl group comprising an ether or thioether linkage and substituted at the terminal position with an ammonium group.
- 33. The polymer of claim 31 wherein R is a straight chained hydrocarbyl group comprising an ether or thioether linkage and substituted at the terminal position with a trialkylammonium group.
- 34. The polymer of claim 31 wherein R is a straight chained hydrocarbyl group comprising an ether or thioether linkage and substituted at the terminal position with a trimethylammonium group.
- 35. The polymer of claim 30 wherein R is a straight chained hydrocarbyl group comprising an ammonium linkage.
- 36. The polymer of claim 30 wherein the boron functionalized monomer is represented by the following structural formula:
- 37. The polymer of claim 36 wherein M is a covalent bond, —CH2—, 1,4-phenylene, —C(O)O—, —C(O)NR1, —C(O)—, —O—, —NR1—, —CH2NR113 or —CH2O—.
- 38. The polymer of claim 36 wherein the monomer is represented by the following structural formula:
- 39. The polymer of claim 38 wherein Q is a C1 to C30 alkylene group.
- 40. The polymer of claim 39 wherein R is —CH2—S—(CH2)n—Y, n is an integer from about 6 to about 30 and Y is an ammonium group.
- 41. The polymer of claim 40 wherein Y is a trialkylammonium group.
- 42. The polymer of claim 40 wherein Y is a trimethylammonium group.
- 43. The polymer of claim 9 wherein the polymer is crosslinked.
- 44. The polymer of claim 9 wherein the polymer comprises comprises hydrophobic groups.
- 45. The polymer of claim 9 wherein the polymer is a copolymer comprising a hydrophobic comonomer.
- 46. A polymer comprising monomer units represented by the following structural formula:
- 47. The polymer of claim 43 wherein Y is a trialkylammonium group.
- 48. The polymer of claim 43 wherein Y is a trimethylammonium group.
- 49. The polymer of claim 48 wherein R3 and R5 are —H and R4 is —F.
- 50. A method of inhibiting the uptake of fat in the gastrointestinal tract of a subject in need of such treatment, said method comprising the step of administering to the subject an effective amount of a polymer comprising one or more pendent aryl boronate ester groups represented by a structural formula selected from:
- 51. The method of claim 50 wherein the subject is being treated for obesity.
- 52. The method of claim 51 wherein each Z is —O—.
- 53. A method of inhibiting the uptake of fat in the gastrointestinal tract of a subject in need of such treatment, said method comprising the step of administering to the subject an effective amount of a polymer comprising one or more pendent phenyl boronate ester groups represented by a structural formula selected from:
- 54. The method of claim 53 wherein the subject is being treated for obesity.
- 55. The method of claim 54 wherein Phenyl Ring A is substituted with one or more electron withdrawing groups.
- 56. The method of claim 55 wherein the pendent phenyl boronate ester groups are represented by a structural formula selected from:
- 57. The method of claim 56 wherein X is —CHD—, —CD2—, —CO—, —CONH—, —COO—, —S(O)—, —S(O2)O— or —SO2—; Phenyl Ring B is optionally substituted with one or more electron withdrawing groups; D is a halogen; and R is a straight chained hydrocarbyl group with an ether or thioether linkage and is substituted at the terminal position with an amine, halogen, —CF3, thiol, ammonium, alcohol, —COOH, —SO3H, —OSO3H or phosphonium group.
- 58. The method of claim 57 wherein X is —CHD—, —CD2—, —CO—, —CONH—, —COO— or —SO2—
- 59. The method of claim 56 wherein X is —CHD—, —CD2—, —COO—, —CONH—, —CO— or —SO2—; Phenyl Ring B is optionally substituted with one or more electron withdrawing groups; D is a halogen; and R is a straight chained hydrocarbyl group with an ether or thioether linkage and is substituted at the terminal position with —[NH—(CH2)q]r—NH2), wherein q is an integer from 2 to about 10 and r is an integer from 1 to about 5, provided that one or more of the secondary amines in —[NH—(CH2)q]r—NH2) are optionally N-alkylated or N,N-dialkylated and the primary amine in —[NH—(CH2)q]r—NH2) is optionally N-alkylated, N,N-dialkylated or N,N,N-trialkylated.
- 60. A method of treating a subject for obesity, said method comprising the step of administering to the subject an effective amount of a polymer comprising one or more pendent phenyl boronate ester groups represented by a structural formula selected from:
- 61. The method of claim 60 wherein Phenyl Ring B is optionally substituted with one more electron withdrawing groups; R is a straight chained hydrocarbyl group optionally comprising an ether or thioether linkage; and R is substituted at the terminal position with an amine, halogen, —CF3, thiol, ammonium group, alcohol, —COOH, —SO3H, —OSO3H or phosphonium group.
- 62. The method of claim 61 wherein R is a straight chained hydrocarbyl group comprising an ether or thioether linkage and substituted at the terminal position with an ammonium group.
- 63. The method of claim 61 wherein R is a straight chained hydrocarbyl group comprising an ether or thioether linkage and substituted at the terminal position with a trialkyl ammonium group.
- 64. The method of claim 61 wherein R is a straight chained hydrocarbyl group comprising an ether or thioether linkage and substituted at the terminal position with a trimethyl ammonium group
- 65. The method of claim 60 wherein Phenyl Ring B is optionally substituted with one more electron withdrawing groups; R is a straight chained hydrocarbyl group with an ammonium linkage and optionally substituted at the terminal position with an amine, halogen, —CF3, thiol, ammonium group, alcohol, —COOH, —SO3H, —OSO3H or phosphonium group.
- 66. The method of claim 60 wherein Phenyl Ring B is optionally substituted with one more electron withdrawing groups; R is a straight chained hydrocarbyl group with an ammonium linkage.
- 67. The method of claim 60 wherein Phenyl Ring B is optionally substituted with one more electron withdrawing groups; R is a straight chained hydrocarbyl group substituted at the terminal position with an amine, halogen, —CF3, thiol, ammonium group, alcohol, —COOH, —SO3H, —OSO3H or phosphonium group.
- 68. The method of claim 67 wherein R is a straight chained hydrocarbyl group substituted at the terminal position with an ammonium group.
- 69. The method of claim 67 wherein R is a straight chained hydrocarbyl group substituted at the terminal position with a trialkyl ammonium group.
- 70. The method of claim 56 wherein —XR is —C(O)CH2— O[—(CH2)pO]m—(CH2)p—Y or —C(O)CH2—S[—(CH2)pO]m—(CH2)p—Y, p is 2 or 3, m is an integer from 1-5 and Y is an ammonium group.
- 71. The method of claim 60 wherein the phenyl boronate ester groups are represented by the following structural formula:
- 72. The method of claim 71 wherein Y is a trialkylammonium group.
- 73. The method of claim 72 wherein Y a trimethylammonium group.
- 74. The method of claim 60 wherein the phenyl boronate group is connected directly to the polymer backbone.
- 75. The method of claim 74 wherein the polymer is polyvinyl alcohol or a polysaccharide.
- 76. The method of claim 60 wherein the polymer is a fat-binding polymer.
- 77. The method of claim 76 wherein the polymer is cationic.
- 78. The method of claim 76 wherein the polymer is a synthetic polyamine.
- 79. A method of treating a subject for obesity, said method comprising the step of administering to the subject an effective amount of a polymer comprising phenyl boronate functionalized monomer, said monomer comprising a moiety W represented by a structural formula selected from:
- 80. A method of treating a subject for obesity, said method comprising the step of administering to the subject an effective amount of a polymer comprising phenyl boronate functionalized monomer, said monomer comprising a moiety W represented by a structural formula selected from:
- 81. The method of claim 80 wherein R10 is —H.
- 82. The method of claim 81 wherein Phenyl Ring B is optionally substituted with one or more additional electron withdrawing groups and R is a straight chained hydrocarbyl group comprising an ether or thioether linkage and substituted at the terminal position with an amine, halogen, —CF3, thiol, ammonium group, alcohol, —COOH, —SO3H, —OSO3H or phosphonium group.
- 83. The method of claim 82 wherein R is a straight chained hydrocarbyl group comprising an ether or thioether linkage and substituted at the terminal position with an ammonium group.
- 84. The method of claim 82 wherein R is a straight chained hydrocarbyl group comprising an ether or thioether linkage and substituted at the terminal position with a trialkylammonium group.
- 85. The method of claim 82 wherein R is a straight chained hydrocarbyl group comprising an ether or thioether linkage and substituted at the terminal position with a trimethylammonium group
- 86. The method of claim 81 wherein R is a straight chained hydrocarbyl group comprising an ammonium linkage.
- 87. The method of claim 81 wherein the boron functionalized monomer is represented by the following structural formula:
- 88. The method of claim 87 wherein M is —CH2—, 1,4-phenylene, —C(O)O—, —C(O)NR1, —C(O)—, —O—, —NR1—, —CH2NR1— or —CH2O—;
- 89. The method of claim 87 wherein the monomer is represented by the following structural formula:
- 90. The method of claim 89 wherein Q is a C1 to C30 alkylene group.
- 91. The method of claim 90 wherein R is —CH2—S—(CH2)n—Y, n is an integer from about 6 to about 30 and Y is an ammonium group.
- 92. The method of claim 91 wherein Y is a trialkylammonium group.
- 93. The method of claim 91 wherein Y is a trimethylammonium group.
- 94. The method of claim 56 wherein the polymer is crosslinked.
- 95. The method of claim 56 wherein the polymer comprises comprises hydrophobic groups.
- 96. The method of claim 56 wherein the polymer is a copolymer comprising a hydrophobic comonomer.
- 97. A method of treating a subject for obesity, said method comprising the step of administering to the subject an effective amount of a polymer comprising monomer units represented by the following structural formula:
- 98. The method of claim 97 wherein Y is a trialkylammonium group.
- 99. The method of claim 97 wherein Y is a trimethylammonium group.
- 100. The method of claim 99 wherein R3 and R5 are —H and R4 is —F.
RELATED APPLICATIONS
[0001] This application claims the benefit of U.S. Provisional Application No. 60/302,221, filed Jun. 29, 2001, and U.S. Provisional Application No. 60/359,473, filed Feb. 22, 2002, the entire teachings of which are incorporated herein by reference.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60302221 |
Jun 2001 |
US |
|
60359473 |
Feb 2002 |
US |