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通过一种新型包封技术从海藻酸盐微球中实现高pI蛋白的缓释。

Extended release of high pI proteins from alginate microspheres via a novel encapsulation technique.

作者信息

Wells L A, Sheardown H

机构信息

Department of Chemical Engineering, McMaster University, Hamilton, Ont., Canada.

出版信息

Eur J Pharm Biopharm. 2007 Mar;65(3):329-35. doi: 10.1016/j.ejpb.2006.10.018. Epub 2006 Nov 1.

Abstract

Alginate has potential as a matrix for controlled delivery of protein-based drugs that require site-specific long-term delivery. In the current work albumin, lysozyme and chymotrypsin were encapsulated into alginate microspheres using a novel method that involved soaking the microspheres in a protein-containing NaCl solution. This was followed by recrosslinking with calcium chloride. High pI proteins also appeared to physically crosslink the sodium alginate which resulted in more sustained release. Release was affected by the nature of the releasate solution. In TRIS buffered saline, the high pI proteins chymotrypsin and lysozyme showed sustained release lasting over 150 h. Release into 0.15% NaCl led to relatively constant release of lysozyme and chymotrypsin over more than 2000 h; reduction of the releasate volume lengthened the lysozyme release to greater than 8 months. Released lysozyme was shown to remain active for at least 16 days, in some cases with activity greater than 100% of the active control. This encapsulation technique can therefore be used to rapidly load alginate microspheres with proteins, with high isoelectric point proteins showing particular promise. Furthermore, the interactions between the high pI proteins and the alginate gel could potentially be exploited to generate new protein delivery systems.

摘要

藻酸盐有潜力作为一种基质,用于需要特定部位长期递送的基于蛋白质的药物的控释。在当前工作中,使用一种新方法将白蛋白、溶菌酶和胰凝乳蛋白酶封装到藻酸盐微球中,该方法包括将微球浸泡在含蛋白质的氯化钠溶液中,随后用氯化钙进行再交联。高pI蛋白似乎还能使海藻酸钠发生物理交联,从而实现更持久的释放。释放受释放液性质的影响。在TRIS缓冲盐溶液中,高pI蛋白胰凝乳蛋白酶和溶菌酶显示出持续超过150小时的释放。释放到0.15%氯化钠溶液中导致溶菌酶和胰凝乳蛋白酶在超过2000小时内相对恒定地释放;减少释放液体积可将溶菌酶释放时间延长至超过8个月。释放出的溶菌酶至少16天保持活性,在某些情况下活性大于活性对照的100%。因此,这种封装技术可用于快速将蛋白质加载到藻酸盐微球中,高电荷蛋白质显示出特别的前景。此外,高pI蛋白与藻酸盐凝胶之间的相互作用可能被用于开发新的蛋白质递送系统。

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