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聚电解质复合物纤维的控释

Controlled release from fibers of polyelectrolyte complexes.

作者信息

Liao I-Chien, Wan Andrew C A, Yim Evelyn K F, Leong Kam W

机构信息

Department of Biomedical Engineering, The Johns Hopkins University, School of Medicine, Baltimore, MD 21205, USA.

出版信息

J Control Release. 2005 May 18;104(2):347-58. doi: 10.1016/j.jconrel.2005.02.013. Epub 2005 Apr 7.

Abstract

Controlled release systems for delicate compounds, such as proteins, often suffer the drawbacks of decreased bioactivity and low encapsulation efficiency. This study introduces the concept of producing drug-loaded fibers from interfacial polyelectrolyte complexation. Chitosan-alginate fibers were produced by pulling from the interface between two polyelectrolyte solutions at room temperature. Depending on the component properties, the release time of encapsulated components from these fibers can range from hours to weeks. Dexamethasone was completely released within 2 h, whereas charged compounds such as BSA, PDGF-bb, and avidin showed sustained release for 3 weeks. The fibers were able to release PDGF-bb in a steady fashion for over 3 weeks without an initial burst. Furthermore, the bioactivity of PDGF-bb was retained over this period. Release kinetics could be controlled by the inclusion of heparin, which contains specific binding sites for various growth factors. By varying the alginate/heparin ratios in the anionic polyelectrolyte solution, the release of PDGF-bb could be significantly altered. In this study, interfacial polyelectrolyte complexation has been demonstrated to be a promising technique for producing drug-loaded fibers with high encapsulation efficiency, sustained release kinetics, and capacity to retain the bioactivity of the encapsulants.

摘要

用于蛋白质等精细化合物的控释系统常常存在生物活性降低和包封效率低的缺点。本研究引入了通过界面聚电解质络合制备载药纤维的概念。壳聚糖-海藻酸盐纤维是在室温下从两种聚电解质溶液的界面处拉伸制备的。根据组分特性,这些纤维中包封组分的释放时间可以从数小时到数周不等。地塞米松在2小时内完全释放,而诸如牛血清白蛋白(BSA)、血小板衍生生长因子BB(PDGF-bb)和抗生物素蛋白等带电化合物则显示出持续3周的释放。这些纤维能够以稳定的方式释放PDGF-bb超过3周,且没有初始突释。此外,在此期间PDGF-bb的生物活性得以保留。通过加入含有各种生长因子特异性结合位点的肝素,可以控制释放动力学。通过改变阴离子聚电解质溶液中的海藻酸盐/肝素比例,可以显著改变PDGF-bb的释放。在本研究中,界面聚电解质络合已被证明是一种有前景的技术,可用于制备具有高包封效率、持续释放动力学以及保留包封剂生物活性能力的载药纤维。

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