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A simple and robust method for pre-wetting poly (lactic-co-glycolic) acid microspheres

机译:一种预润湿聚乳酸-乙醇酸微球的简单而稳定的方法

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摘要

Poly (lactic-co-glycolic) acid microspheres are amenable to a number of biomedical procedures that support delivery of cells, drugs, peptides or genes. Hydrophilisation or wetting of poly (lactic-co-glycolic) acid are an important pre-requisites for attachment of cells and can be achieved via exposure to plasma oxygen or nitrogen, surface hydrolysis with NaOH or chloric acid, immersion in ethanol and water, or prolonged incubation in phosphate buffered saline or cell culture medium. The aim of this study is to develop a simple method for wetting poly (lactic-co-glycolic) acid microspheres for cell delivery applications. A one-step ethanol immersion process that involved addition of serum-supplemented medium and ethanol to PLGA microspheres over 30 min–24 h is described in the present study. This protocol presents a more efficient methodology than conventional two-step wetting procedures. Attachment of human skeletal myoblasts to poly (lactic-co-glycolic) acid microspheres was dependent on extent of wetting, changes in surface topography mediated by ethanol pre-wetting and serum protein adsorption. Ethanol, at 70% (v/v) and 100%, facilitated similar levels of wetting. Wetting with 35% (v/v) ethanol was only achieved after 24 h. Pre-wetting (over 3 h) with 70% (v/v) ethanol allowed significantly greater (p ≤ 0.01) serum protein adsorption to microspheres than wetting with 35% (v/v) ethanol. On serum protein-loaded microspheres, greater numbers of myoblasts attached to constructs wetted with 70% ethanol than those partially wetted with 35% (v/v) ethanol. Microspheres treated with 70% (v/v) ethanol presented a more rugose surface than those treated with 35% (v/v) ethanol, indicating that more efficient myoblast adhesion to the former may be at least partially attributed to differences in surface structure. We conclude that our novel protocol for pre-wetting poly (lactic-co-glycolic) acid microspheres that incorporates biochemical and structural features into this biomaterial can facilitate myoblast delivery for use in clinical settings.
机译:聚乳酸-乙醇酸微球适用于许多支持细胞,药物,肽或基因传递的生物医学程序。聚乳酸(乳酸-乙醇酸)的亲水化或润湿是细胞附着的重要先决条件,可以通过暴露于血浆氧或氮,用NaOH或氯酸进行表面水解,浸入乙醇和水中或在磷酸盐缓冲液或细胞培养基中长时间孵育。这项研究的目的是开发一种润湿聚乳酸-乙醇酸微球用于细胞递送应用的简单方法。本研究描述了一步乙醇浸入过程,该过程涉及在30 min–24 h内向PLGA微球中添加血清补充培养基和乙醇。与常规的两步润湿程序相比,该协议提供了一种更有效的方法。人类骨骼肌成肌细胞与聚乳酸-乙醇酸微球的附着取决于润湿程度,乙醇预润湿介导的表面形貌变化和血清蛋白吸附。乙醇含量为70%(v / v)和100%时,润湿程度相似。仅在24小时后才使用35%(v / v)乙醇润湿。与用35%(v / v)乙醇润湿相比,用70%(v / v)乙醇进行预润湿(3 h以上)可使血清蛋白对微球的吸附更大(p≤0.01)。在载有血清蛋白的微球上,与部分用35%(v / v)乙醇润湿的构建体相比,附着在用70%乙醇润湿的构建体上的成肌细胞数量更多。与用35%(v / v)乙醇处理的微球相比,用35%(v / v)乙醇处理的微球的表面更粗糙,这表明成肌细胞对前者的更有效粘附至少可以部分归因于表面结构的差异。我们得出的结论是,将生物化学和结构特征整合到这种生物材料中的聚乳酸(乳酸-乙醇酸)微球预润湿的新方案可以促进成肌细胞的递送,以用于临床环境。

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