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PLGA Microspheres Incorporated Gelatin Scaffold: Microspheres Modulate Scaffold Properties

机译:PLGA Microspheres Incorporated明胶支架:微球调节支架特性

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摘要

Freeze drying is one of the popular methods of fabrication for poly(lactide-co-glycolide) (PLGA) microspheres incorporated polymer scaffolds. However, the consequence of microspheres incorporation on physical and biological properties of scaffold has not been studied yet. In this study, attempt has been made to characterize the effect of PLGA microsphere incorporation on the physical properties of freeze-dried gelatin scaffold and its influence on cytocompatibility. Scaffolds loaded with varying amount of PLGA microspheres (10%, 1%, 0.1% w/w) were subjected to microarchitecture analysis, swelling, porosity, mechanical properties, biodegradation, cell adhesion, and cell proliferation studies. Results revealed that an increase in percentage loading of microspheres reduced the pore size and uniformity of the pore structure. Moreover, loading of PLGA microspheres up to 1% w/w significantly increased porosity, swelling, and mechanical properties of the scaffold but variations were not proportional for 10% w/w loading. Results also showed that PLGA microspheres have no significant effect on cell adhesion but influenced the growth kinetics.
机译:冷冻干燥是掺入聚合物支架的聚(丙交酯-共-乙交酯)(PLGA)微球的流行制造方法之一。然而,尚未研究微球掺入对支架的物理和生物学性质的影响。在这项研究中,已尝试表征PLGA微球掺入对冻干明胶支架的物理性质及其对细胞相容性的影响。负载不同数量PLGA微球(10%,1%,0.1%w / w)的支架进行了微结构分析,溶胀,孔隙率,机械性能,生物降解,细胞粘附和细胞增殖研究。结果表明,微球载量的增加降低了孔径和孔结构的均匀性。此外,高达1%w / w的PLGA微球负载量显着增加了支架的孔隙率,溶胀和机械性能,但变化与10%w / w负载不成比例。结果还表明,PLGA微球对细胞粘附没有显着影响,但会影响生长动力学。

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