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溶菌酶从聚(乙二醇)/聚(对苯二甲酸丁二醇酯)基质中的零级释放。

Zero-order release of lysozyme from poly(ethylene glycol)/poly(butylene terephthalate) matrices.

作者信息

Bezemer J M, Radersma R, Grijpma D W, Dijkstra P J, Feijen J, van Blitterswijk C A

机构信息

Institute for Biomedical Technology (BMTI), Polymer Chemistry and Biomaterials, Faculty of Chemical Engineering, University of Twente, P.O. Box 217, 7500 AE, Enschede, The Netherlands.

出版信息

J Control Release. 2000 Feb 14;64(1-3):179-92. doi: 10.1016/s0168-3659(99)00127-3.

Abstract

Protein release from a series of biodegradable poly(ether ester) multiblock copolymers, based on poly(ethylene glycol) (PEG) and poly(butylene terephthalate) (PBT) was investigated. Lysozyme-containing PEG/PBT films and microspheres were prepared using an emulsion technique. Proteins were effectively encapsulated and dense polymer matrices were formed. The swelling in water of PEG/PBT films reached equilibrium within 3 days. The degree of swelling increased with increasing PEG content and with increasing molecular weight of the PEG segment. The release rate of lysozyme from PEG/PBT films could be tailored very precisely by controlling the copolymer composition. Release rates increased with increasing PEG/PBT weight ratio and increasing molecular weight of the PEG segment. For films prepared from block copolymers with PEG blocks of 4000 g/mol, first-order lysozyme release was observed. For matrices prepared from polymers with PEG segments of 1000 and 600 g/mol, the lysozyme release profile followed near zero-order kinetics. A mathematical description of the release mechanism was developed which takes into account the effect of polymer hydrolytic degradation on solute diffusion. The model was found to be consistent with the experimental observations. Finally, determination of the activity of released protein showed that lysozyme was not damaged during the formulation, storage and release periods.

摘要

研究了一系列基于聚乙二醇(PEG)和聚对苯二甲酸丁二醇酯(PBT)的可生物降解聚(醚酯)多嵌段共聚物的蛋白质释放情况。采用乳液技术制备了含溶菌酶的PEG/PBT薄膜和微球。蛋白质被有效包封,并形成了致密的聚合物基质。PEG/PBT薄膜在水中的溶胀在3天内达到平衡。溶胀度随PEG含量的增加以及PEG链段分子量的增加而增大。通过控制共聚物组成,可以非常精确地调整溶菌酶从PEG/PBT薄膜中的释放速率。释放速率随PEG/PBT重量比的增加以及PEG链段分子量的增加而增大。对于由PEG链段为4000 g/mol的嵌段共聚物制备的薄膜,观察到溶菌酶呈一级释放。对于由PEG链段为1000和600 g/mol的聚合物制备的基质,溶菌酶的释放曲线遵循近似零级动力学。建立了一个考虑聚合物水解降解对溶质扩散影响的释放机制数学描述。发现该模型与实验观察结果一致。最后,对释放蛋白质活性的测定表明,溶菌酶在制剂、储存和释放期间未受到损害。

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