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首页> 外文期刊>Macromolecular bioscience >Synthesis, degradability, and drug releasing properties of methyl esters of fungal poly(beta,L-malic acid)
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Synthesis, degradability, and drug releasing properties of methyl esters of fungal poly(beta,L-malic acid)

机译:真菌聚(β,L-苹果酸)甲酯的合成,降解及释药性能

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摘要

Methyl esters of microbial poly(beta,L-malic acid) for conversion degrees of 25, 50, 75, and 100% were prepared by treatment of the polyacid with diazomethane. Esterification proceeded with retention of the molecular weight of the parent polyacid and the copolymers displayed a blocky microstructure consisting of short segments of malic and methyl malate sequences. The thermal stability of the copolyesters was lower than those of the parent homopolymers and all of them were fairly crystalline with melting temperatures within the range of 170-175 degrees C. They were degraded rapidly by water, the hydrolysis rate being highly dependent on the methylation degree. Microspheres with mean-average diameters in the range of 1-20 mu m were prepared from the 100% methylated product by the emulsion-evaporation solvent method. Encapsulation of erythromycin was efficiently performed in these microparticles and its releasing upon incubation in simulated physiological medium was evaluated for different drug loads. Drug delivery was observed to occur by a releasing mechanism largely determined by the hydrodegradation of the host polymer and independent of the amount of loaded drug.
机译:通过用重氮甲烷处理多元酸来制备转化率分别为25%,50%,75%和100%的微生物聚(β,L-苹果酸)甲酯。酯化反应保留了母体多元酸的分子量,共聚物显示出由苹果酸和苹果酸甲酯序列的短片段组成的块状微结构。共聚酯的热稳定性低于母体均聚物的热稳定性,并且它们均具有相当的结晶性,熔融温度在170-175℃范围内。它们被水迅速降解,水解速率高度依赖于甲基化度。由100%甲基化产物通过乳液蒸发溶剂法制备平均直径在1-20μm范围内的微球。在这些微粒中有效地进行了红霉素的包封,并针对不同的药物负荷评估了其在模拟生理介质中温育后的释放。观察到药物的释放是通过一种释放机理发生的,该释放机理主要取决于主体聚合物的加氢降解,并且与所载药物量无关。

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