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Epoxidation of pendant allyl groups in poly(ester-anhydride)s proposed for application in drug delivery

机译:聚(酯酐)中烯丙基侧基的环氧化提议用于药物输送

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This paper describes the synthesis and modification of functional poly(ester-anhydride)s that have potential for a variety of applications in drug delivery. Functional poly(ester-anhydride)s with pendant allyl groups were synthesized by two step polycondensation of oligo(3-allyloxy-l,2-propylene succinate) terminated with carboxyl end groups (OSAGE) and one of diacids (DA): sebacic (SBA) or dodecanedicarboxy-lic acid (DDC). Poly(ester-anhydride)s with molecular weights with range of 3100-7300 Da and with varying degree of functionality were oxidized with m-chloroperbenzoic acid (MCPBA) to yield respective polymers with epoxy pendant groups. The OSAGE to DA ratio in the poly(ester-anhydride)s, polymer concentration in the reaction solution, excess of MCPBA and duration of the reaction, had influenced the conversion of allyl groups into glycidyl ones. For all types of poly(ester-anhydride)s conditions were set up in which 100% of epoxidation could be achieved. Completely oxidized poly(ester-anhydride)s were characterized by means of 'H NMR spectroscopy and DSC technique. Their thermal and solubility characteristics were compared with characteristics of initial poly(ester-anhydride)s. Initial and oxidized polymers containing 80% of SBA or DDC were formulated into microspheres using O/W emulsion technique. The presence of epoxy groups at the surface of microspheres were confirmed by ATR IR spectroscopy. Micro-spheres obtained were subjected to hydrolytic degradation at 37 ℃, in aqueous phosphate buffer solution of pH = 7.41 (PBS).
机译:本文介绍了功能性聚(酯酐)的合成和修饰,在药物递送中的各种应用都有潜力。通过以羧基端基(OSAGE)和二元酸(DA)之一终止的低聚(3-烯丙氧基-1,2-丁二酸琥珀酸酯)和二元酸(DA)的两步缩聚反应合成具有侧基烯丙基的功能性聚(酯-酸酐)。 SBA)或十二烷二甲酸(DDC)。用间氯过苯甲酸(MCPBA)氧化分子量范围为3100-7300 Da且具有不同官能度的聚(酯酐),以生成具有环氧基侧基的相应聚合物。聚(酯酐)中的OSAGE与DA之比,反应溶液中的聚合物浓度,MCPBA过量和反应持续时间影响了烯丙基向缩水甘油基的转化。对于所有类型的聚(酯酐),都设置了可以实现100%环氧化的条件。通过1 H NMR光谱和DSC技术表征完全氧化的聚(酯酐)。将它们的热和溶解度特性与初始聚(酯酐)的特性进行了比较。使用O / W乳液技术将含有80%SBA或DDC的初始和氧化聚合物配制成微球。通过ATR IR光谱法证实了在微球表面上环氧基的存在。将所得微球在pH = 7.41的磷酸盐水溶液(PBS)中于37℃进行水解降解。

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