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首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Hydroxyethyl starch-based polymers for the controlled release of biomacromolecules from hydrogel microspheres
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Hydroxyethyl starch-based polymers for the controlled release of biomacromolecules from hydrogel microspheres

机译:基于羟乙基淀粉的聚合物可控制从水凝胶微球中释放生物大分子

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摘要

Hydrogels are promising delivery systems for the controlled release of biomacromolecules. Based on previous studies, hydrogels were prepared from crosslinkable hydroxyethyl starch with new linker groups to improve mechanical and release properties of the resulting hydrogels. Polyethylene glycol methacrylate with two different spacer lengths was used to obtain polymers (HES-P(EG) nMA) with increased hydrophilicity and degradability, whereas a polymer with methacrylate linker directly at the starch backbone (HES-MA) resulted in a less degradable polymer. Hydrogel disks were obtained by UV crosslinking and characterized by swelling and rheological measurements. The hydrogel strength was strongly influenced by the polymer concentration. Using a water-in-water emulsion process, hydrogel microspheres were prepared. The influence of the type of the linker, the degree of substitution and the phase ratio in the production process on the properties of the microspheres was investigated. Depending on the preparation parameters, particles with narrow particle size distribution and encapsulation efficiencies of up to more than 80% for FITC-dextran 70 kDa (FD70) were obtained. Incorporated FITC-labeled IgG showed a faster release from hydrogel microspheres than FD70. The release rate of incorporated FD70 could be adjusted by using different polymers (HES-P(EG) 10MA HES-P(EG) 6MA HES-MA).
机译:水凝胶是有控制的生物大分子释放系统。基于先前的研究,由具有新的连接基团的可交联羟乙基淀粉制备了水凝胶,以改善所得水凝胶的机械性能和释放性能。使用具有两种不同间隔长度的聚乙二醇甲基丙烯酸酯来获得具有增强的亲水性和降解性的聚合物(HES-P(EG)nMA),而直接在淀粉主链上具有甲基丙烯酸酯连接基的聚合物(HES-MA)则导致了降解性较低的聚合物。通过UV交联获得水凝胶盘,并通过溶胀和流变学测量进行表征。水凝胶强度受到聚合物浓度的强烈影响。使用水包水乳液法,制备了水凝胶微球。研究了连接剂类型,取代度和生产过程中的相比对微球性能的影响。取决于制备参数,对于FITC-葡聚糖70 kDa(FD70),可以获得粒径分布窄且包封效率高达80%以上的颗粒。掺入FITC标记的IgG比FD70从水凝胶微球中释放更快。可以通过使用不同的聚合物(HES-P(EG)10MA> HES-P(EG)6MA> HES-MA)调节掺入的FD70的释放速率。

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