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首页> 外文期刊>Journal of Bioactive and Compatible Polymers >A Novel Salted-out and Subsequently Crosslinked Poly(Lactic-co-Glycolic Acid)Polymeric Scaffold Applied to Monolithic Drug Delivery
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A Novel Salted-out and Subsequently Crosslinked Poly(Lactic-co-Glycolic Acid)Polymeric Scaffold Applied to Monolithic Drug Delivery

机译:一种新型的盐析并随后交联的聚乳酸-乙醇酸共聚物支架用于整体药物递送

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摘要

This study involved a statistical approach to develop a mechanistic understanding of the salting-out of poly(lactic-co-glycolic acid)(PLGA)and to evaluate the capacity to modulate the physicochemical and physicomechanical properties of PLGA by incorporating electrolytes that produce stochastic fluctuations.The correlation between the three types of salts used and the extent of PLGA chain transitions were established by structural-thermal analysis.Drug-loaded monolithic matrices are prepared by direct compressing salted-out PLGA and a model drug(melatonin).PLGA scaffolds possess fiber diameters and volumes ranging between 0.1-15 mu m and 0.0075-14,000 mu m3,respectively.Texture profile analysis reveal a significant increase in the energy absorbed and matrix resilience with increased NaCl2 and AlCl3 concentrations.In vitro drug release studies were performed in phosphate buffered saline(pH 7.4;37 deg C);the release media was sampled at pre-determined intervals and analyzed by UV spectroscopy.Ideal zero-order drug release profiles were observed with 20% melatonin over a 30-day period.Monolithic matrices prepared by crosslinking melatonin with PLGA reveal a superior capability to control drug release.The salting-out and subsequent crosslinking of PLGA significantly modified the physicochemical and physicomechanical properties of native PLGA and demonstrated the ability to achieve controlled drug release.
机译:这项研究涉及一种统计方法,以发展对聚乳酸-乙醇酸(PLGA)盐析的机理的理解,并通过结合产生随机波动的电解质来评估调节PLGA的理化和物理力学性能的能力通过结构热分析确定了所使用的三种盐与PLGA链跃迁程度之间的相关性。通过直接压缩盐析出的PLGA和模型药物(褪黑激素)制备载药的整体式基质.PLGA支架具有纤维的直径和体积分别在0.1-15μm和0.0075-14,000μm3之间。纹理分布分析显示,随着NaCl2和AlCl3浓度的增加,吸收的能量和基质弹性显着增加。在磷酸盐中进行了体外药物释放研究缓冲盐水(pH 7.4; 37℃);以预定的时间间隔对释放介质进行采样并通过紫外光谱进行分析在30天的时间内,用20%的褪黑素观察到了理想的零级药物释放曲线,通过将褪黑素与PLGA交联制备的单分子基质显示出优异的控制药物释放的能力。天然PLGA的物理化学和物理机械性能,并证明了实现受控药物释放的能力。

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