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首页> 外文期刊>Biomaterials >CONTROLLED PROTEIN DELIVERY FROM BIODEGRADABLE TYROSINE-CONTAINING POLY(ANHYDRIDE-CO-IMIDE) MICROSPHERES
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CONTROLLED PROTEIN DELIVERY FROM BIODEGRADABLE TYROSINE-CONTAINING POLY(ANHYDRIDE-CO-IMIDE) MICROSPHERES

机译:含生物可降解酪氨酸的聚(酸酐-共酰亚胺)微球的可控蛋白质递送

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Polymer microspheres capable of the controlled release of macromolecules for periods ranging from days to over a month were developed. The microspheres were made using a new family of anhydride polymers: tyrosine-containing poly(anhydride-co-imides), specifically poly[trimellitylimido-L-tyrosine-co-sebacic acid-co-1,3-bis(carboxyphenoxy)propane] anhydrides [poly(TMA-Tyr:SA:CPP)]. These polymers may be of particular interest for controlled delivery of vaccine antigens due to the incorporation of an immunological adjuvant, L-tyrosine, into their backbone. Microspheres were produced from a variety of polymer compositions using a double-emulsion solvent-evaporation technique, and tested for their ability to provide controlled release of a model protein, bovine serum albumin, in vitro. The microspheres are spherical with smooth surfaces and encapsulate greater than 70% of the protein. Protein release rates from polymers of identical composition could be varied from 0.3 to over 125 mu g per mg spheres per month by changing the amount of protein encapsulated. This effect can be magnified by using polymers with various monomer ratios. A close correlation between protein release and polymer weight loss was observed, suggesting a release mechanism controlled mainly by polymer erosion. Bovine serum albumin release from poly(TMA-Tyr:SA:CPP) microspheres is also pH sensitive, being enhanced at high pH and depressed under acidic conditions. (C) 1997 Elsevier Science Limited. [References: 31]
机译:开发了能够在几天至一个月以上的时间内控制释放大分子的聚合物微球。使用新的酸酐聚合物家族制备微球:含酪氨酸的聚(酸酐-共酰亚胺),特别是聚[三苯甲酰亚胺基-L-酪氨酸-癸二酸-co-1,3-双(羧苯氧基)丙烷]酸酐[聚(TMA-Tyr:SA:CPP)]。由于将免疫佐剂L-酪氨酸掺入到它们的骨架中,这些聚合物对于控制疫苗抗原的递送可能特别有意义。使用双乳液溶剂蒸发技术由多种聚合物组合物制得微球,并测试了其在体外可控释放模型蛋白,牛血清白蛋白的能力。微球是具有光滑表面的球形,并且包封了大于70%的蛋白质。通过改变包封的蛋白质量,蛋白质从相同组成的聚合物中释放的速率可以从0.3到超过125μg/ mg球每月变化。通过使用具有各种单体比率的聚合物,可以放大这种效果。观察到蛋白质释放与聚合物重量损失之间的密切相关,表明释放机理主要受聚合物侵蚀控制。从聚(TMA-Tyr:SA:CPP)微球中释放的牛血清白蛋白也对pH敏感,在高pH下会增强,而在酸性条件下会抑制。 (C)1997 Elsevier Science Limited。 [参考:31]

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