首页> 外文期刊>Journal of biomedical materials research, Part A >Determining the protein drug release characteristics and cell adhesion to a PLLA or PLGA biodegradable polymer membrane
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Determining the protein drug release characteristics and cell adhesion to a PLLA or PLGA biodegradable polymer membrane

机译:确定蛋白质药物释放特性和对PLLA或PLGA可生物降解的聚合物膜的粘附性

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摘要

Biodegradable polymers are of interest for developing controlled protein drug delivery platforms. In this study, two poly (α-hydroxy) esters were formulated with Aerosol-OT, a surfactant stabilizer, to encapsulate the protein keratinocyte growth factor (KGF) for controlled release KGF is involved in a number of crucial biologic processes, most notably epithelial growth and repair. The concentration of KGF that caused a biological response in vitro was determined (optimally 10 ng/mL) and compared with the release of KGF from the two biodegradable polymer membrane formulations. Each polymer formulation released biologically relevant levels, 10 ng/mL of active KGF, although with different times release kinetics. The membrane composed of PLGA/AOT/KGF exhibited a faster release rate of KGF into solution after 120 h of degradation time than the release rate of the PLLA/AOT/ KGF matrices. Cell seeding assays showed that both polymer matrices, when formulated with AOT, sustained cell growth. Time of Flight Secondary Ion Mass Spectrometry (ToF-SIMS) was used to characterize the distribution of AOT and KGF through the polymer membrane.
机译:可生物降解的聚合物对于开发受控蛋白质药物递送平台感兴趣。在该研究中,用气溶胶 - OT,表面活性剂稳定剂配制两种聚(α-羟基)酯,用于包封蛋白角蛋白细胞生长因子(KGF),用于控制释放KGF,参与许多关键的生物方法,最符合的上皮成长和修复。测定导致体外生物反应的KGF的浓度(最佳地为10ng / ml),并与来自两个可生物降解的聚合物膜制剂的kgf的释放相比。每种聚合物配方释放生物相关水平,10ng / ml活性KGF,尽管用不同的时间释放动力学。由PLGA / AOT / KGF组成的膜在比PLLA / AOT / KGF基质的释放速率下降到120小时后,在120小时后表现出KGF的更快释放速率。细胞播种测定显示,两种聚合物基质,当配制时,随着AOT配制,持续的细胞生长。飞行时间二次离子质谱(TOF-SIMS)用于表征通过聚合物膜的AOT和KGF的分布。

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