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首页> 外文期刊>Pharmaceutical research >In vitro protein release and degradation of poly-dl-lactide-poly(ethylene glycol) microspheres with entrapped human serum albumin: quantitative evaluation of the factors involved in protein release phases.
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In vitro protein release and degradation of poly-dl-lactide-poly(ethylene glycol) microspheres with entrapped human serum albumin: quantitative evaluation of the factors involved in protein release phases.

机译:捕获的人血清白蛋白的聚dl-丙交酯-聚(乙二醇)微球的体外蛋白质释放和降解:定量评估参与蛋白质释放阶段的因素。

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PURPOSE: To quantitatively evaluate the correlations between the amount of initial burst release and the surface-associated protein, and between the onset time for the second burst release and the matrix polymer degradation. METHODS: Human serum albumin (HSA) was microencapsulated in polylactide (PLA) and poly-dl-lactide-poly(ethylene glycol) (PELA) with PEG contents of 5, 10, 20, and 30%, respectively, using the solvent extraction procedure based on formation of double emulsion w/o/w. Microspheres with similar particle size (1.7-2.0 microm), similar protein entrapment (2.1-2.8%) but different surface-associated proteins (9.3-53.6%) were used to evaluate the in vitro matrix degradation and protein release profiles. Degradation was characterized by studying the intrinsic viscosity decrease, medium pH change, and weight loss of the microspheres. RESULTS: The matrix degradation and protein release profiles were highly dependent on the polymer composition of the microspheres. Faster decreases in the intrinsic viscosity of recovered matrix polymer, the microspheres weight, and the pH of degradation medium, and earlier onsets for the break in intrinsic viscosity reduction and the mass loss were detected for PELA microspheres with higher PEG content. The hydration and swelling of microspheres matrix contributed greatly to the degradation of matrix polymer. The HSA release showed triphasic profile and involved two mechanisms for all the microsphere samples. Smaller amount of initial burst release, larger gradual release rate, and earlier onset for the second burst release were observed for HSA from matrix polymer with higher PEG content. The extent of the initial burst release was quantitatively related with the surface-associated protein. The second burst release of HSA was observed to occur within 1 week after the onset for mass loss, which was also the break in the intrinsic viscosity reduction rate. CONCLUSION: Protein release profiles could be rationalized by optimizing the matrix polymer degradation and microsphere characteristics.
机译:目的:定量评估初始爆发释放量与表面相关蛋白之间的相关性,以及第二次爆发释放的起始时间与基质聚合物降解之间的相关性。方法:使用溶剂萃取法将人血清白蛋白(HSA)微囊化在PEG含量分别为5、10、20和30%的聚丙交酯(PLA)和聚二丙交酯-聚乙二醇(PELA)中基于形成双乳液w / o / w的程序。具有相似粒径(1.7-2.0微米),相似的蛋白质截留(2.1-2.8%)但不同的表面缔合蛋白质(9.3-53.6%)的微球用于评估体外基质降解和蛋白质释放曲线。通过研究特性粘度降低,中等pH值变化和微球重量损失来表征降解。结果:基质降解和蛋白质释放曲线高度依赖于微球的聚合物组成。回收的基质聚合物的特性粘度,微球重量和降解介质的pH下降得更快,并且对于具有更高PEG含量的PELA微球,发现了特性粘度下降中断和质量损失的较早发作。微球基质的水合作用和溶胀极大地促进了基质聚合物的降解。 HSA释放显示出三重分布,并且涉及所有微球样品的两种机制。对于来自具有较高PEG含量的基质聚合物的HSA,观察到较小的初始突释释放量,较大的逐步释放速率和第二次突释释放的较早发生。初始爆发释放的程度与表面相关蛋白定量相关。观察到HSA的第二次爆发释放发生在质量损失发作后的1周内,这也是特性粘度降低速率的中断。结论:可以通过优化基质聚合物降解和微球特性来合理化蛋白质释放曲线。

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