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Electrospray synthesis and properties of hierarchically structured PLGA TI PS microspheres for use as controlled release technologies

机译:电喷雾合成和分层结构的pLGa TI ps微球的性质,用作控释技术

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摘要

Microsphere-based controlled release technologies have been utilized for the long-term delivery of proteins, peptides and antibiotics, although their synthesis poses substantial challenges owing to formulation complexities, lack of scalability, and cost. To address these shortcomings, we used the electrospray process as a reproducible, synthesis technique to manufacture highly porous (>94%) microspheres while maintaining control over particle structure and size. Here we report a successful formulation recipe used to generate spherical poly(lactic-co-glycolic) acid (PLGA) microspheres using the electrospray (ES) coupled with a novel thermally induced phase separation (TIPS) process with a tailored Liquid Nitrogen (LN) collection scheme. We show how size, shape and porosity of resulting microspheres can be controlled by judiciously varying electrospray processing parameters and we demonstrate examples in which the particle size (and porosity) affect release kinetics. The effect of electrospray treatment on the particles and their physicochemical properties are characterized by scanning electron microscopy, confocal Raman microscopy, thermogravimetric analysis and mercury intrusion porosimetry. The microspheres manufactured here have successfully demonstrated long-term delivery (i.e. 1 week) of an active agent, enabling sustained release of a dye with minimal physical degradation and have verified the potential of scalable electrospray technologies for an innovative TIPS-based microsphere production protocol.
机译:基于微球的控释技术已被用于蛋白质,肽和抗生素的长期递送,尽管由于配方复杂,缺乏可扩展性和成本,它们的合成提出了严峻的挑战。为了解决这些缺点,我们使用电喷雾工艺作为可重复的合成技术,以制造高度多孔(> 94%)的微球,同时保持对颗粒结构和尺寸的控制。在这里,我们报告了一种成功的配方配方,该配方用于通过电喷雾(ES)结合定制的液氮(LN)的新型热诱导相分离(TIPS)工艺来生成球形聚乳酸-乙醇酸(PLGA)微球收集方案。我们展示了如何通过明智地改变电喷雾加工参数来控制所得微球的尺寸,形状和孔隙度,并展示了其中粒径(和孔隙度)影响释放动力学的实例。电喷雾处理对颗粒的影响及其理化性质通过扫描电子显微镜,共焦拉曼显微镜,热重分析和压汞法进行表征。此处制造的微球已成功证明了活性剂的长期交付(即1周),可以使染料持续释放,而物理降解最小,并且已经验证了可扩展的电喷雾技术对于基于创新TIPS的微球生产方案的潜力。

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