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首页> 外文期刊>Journal of biomedical materials research, Part A >Biodegradable salicylate-based poly(anhydride-ester) microspheres for controlled insulin delivery
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Biodegradable salicylate-based poly(anhydride-ester) microspheres for controlled insulin delivery

机译:可生物降解的基于水杨酸酯的聚(酸酐酯)微球,可控制胰岛素的输送

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摘要

Salicylate-based poly(anhydride-esters) (PAEs) chemically incorporate salicylic acid (SA) into the polymer backbone, which is then delivered in a controlled manner upon polymer hydrolysis. In this work, a salicylate-based PAE is a carrier to encapsulate and deliver insulin. Polymer microspheres were formulated using a water/oil/water double-emulsion solvent evaporation technique. The microspheres obtained had a smooth surface, high protein encapsulation efficiency, and relatively low emulsifier content. Insulin was released in vitro for 15 days, with no signs of aggregation or unfolding of the secondary structure. The released insulin also retained bioactivity in vitro. Concurrently, SA was released from the microspheres with polymer degradation and anti-inflammatory activity was observed. Based upon these results, the formulated microspheres enable simultaneous delivery of insulin and SA, both retaining bioactivity following processing.
机译:基于水杨酸酯的聚(酸酐酯)(PAE)将水杨酸(SA)化学结合到聚合物主链中,然后在聚合物水解时以受控方式递送。在这项工作中,基于水杨酸酯的PAE是封装和输送胰岛素的载体。使用水/油/水双乳液溶剂蒸发技术配制聚合物微球。所获得的微球具有光滑的表面,高的蛋白质包封效率和相对较低的乳化剂含量。胰岛素在体外释放15天,没有二级结构聚集或展开的迹象。释放的胰岛素在体外也保留了生物活性。同时,SA从微球中释放出来,导致聚合物降解,并观察到抗炎活性。基于这些结果,配制的微球能够同时递送胰岛素和SA,在加工后均保持生物活性。

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