TY - JOUR
T1 - Synthesis, degradation, and drug delivery of cycloaliphatic poly(ester anhydride)s
AU - Zhang, Tao
AU - Xu, Min
AU - Chen, Hong
AU - Yu, Xuehai
PY - 2002/12/5
Y1 - 2002/12/5
N2 - The high melting point of poly(1,4-cyclohexanedicarboxylic anhydride) [poly(CHDA)] is a disadvantage, in that it is intractable in the melting process of a drug delivery system. This report relates to diols introduced into the polyanhydride main chain to decrease its melting point. Various poly(ester anhydride)s containing ethylene glycol, 1,3-propanediol, 1,4-butanediol, or 1,6-hexandiol [poly-(CHDA-XDO)] were synthesized by the esterification reaction and melt polycondensation. FTIR, DSC, WAXD, and intrinsic viscosity of polymers were recorded and hydrolytic degradation, as well as in vitro drug delivery, was conducted. The results show that the samples are stable in an anhydrous environment at room temperature and degrade in water following a surface erosion mechanism. The degradation period of poly(CHDA-XDO) ranged from 130 to 320 h as a result of the different diols and amounts of XDO introduced. The in vitro drug delivery gave 130-350 h of stable delivery along with the typical surface erosion mechanism.
AB - The high melting point of poly(1,4-cyclohexanedicarboxylic anhydride) [poly(CHDA)] is a disadvantage, in that it is intractable in the melting process of a drug delivery system. This report relates to diols introduced into the polyanhydride main chain to decrease its melting point. Various poly(ester anhydride)s containing ethylene glycol, 1,3-propanediol, 1,4-butanediol, or 1,6-hexandiol [poly-(CHDA-XDO)] were synthesized by the esterification reaction and melt polycondensation. FTIR, DSC, WAXD, and intrinsic viscosity of polymers were recorded and hydrolytic degradation, as well as in vitro drug delivery, was conducted. The results show that the samples are stable in an anhydrous environment at room temperature and degrade in water following a surface erosion mechanism. The degradation period of poly(CHDA-XDO) ranged from 130 to 320 h as a result of the different diols and amounts of XDO introduced. The in vitro drug delivery gave 130-350 h of stable delivery along with the typical surface erosion mechanism.
KW - 1,4-cyclohexanedicarboxylic acid
KW - Degradation
KW - Drug delivery
KW - Poly(ester anydride)
KW - Synthesis
UR - https://www.scopus.com/pages/publications/0037027786
U2 - 10.1002/app.11056
DO - 10.1002/app.11056
M3 - 文章
AN - SCOPUS:0037027786
SN - 0021-8995
VL - 86
SP - 2509
EP - 2514
JO - Journal of Applied Polymer Science
JF - Journal of Applied Polymer Science
IS - 10
ER -