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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Synthesis of uniform poly(d,l-lactide) and poly(d,l-lactide-co-glycolide) microspheres using a microfluidic chip for comparison
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Synthesis of uniform poly(d,l-lactide) and poly(d,l-lactide-co-glycolide) microspheres using a microfluidic chip for comparison

机译:使用微流控芯片合成均匀的聚(d,l-丙交酯)和聚(d,l-丙交酯-乙交酯)微球

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摘要

Applications of poly(l-lactide) (PLA) and poly(d,l-lactide-co-glycolide) (PLGA) microspheres are widely used in the biomedical and pharmaceutical fields. The effects of PLA/PLGA on microsphere properties when using conventional particulate preparation methods are not easily defined due to the uncontrollable particle size and size distribution. This study was aimed to synthesize uniform PLA and PLGA microspheres using a phenol formaldehyde resin-based microfluidic chip, which has the advantage of being solvent-resistant, flexible, and is readily disassembled for cleaning. The proposed chip can rapidly fabricate reproducible PLA and PLGA microspheres. Uniform emulsion droplets can be achieved by hydrodynamic flow focusing. After solvent evaporation, the free-flowing PLA and PLGA microspheres have a high level of morphological uniformity and size, allowing for a clear comparison of material effects. The results indicate that the sizes of the PLA and PLGA microspheres for the various flow rates of dispersed/continuous phases are very similar. The PLA/PLGA materials do not have a significant effect on particle size, but the particle surface indicates a different morphology. The result of the cytotoxicity evaluation shows no difference between PLA and PLGA and ensures the biocompatibility of both prepared PLA and PLGA microspheres for biomedical and pharmaceutical applications in the future.
机译:聚(l-丙交酯)(PLA)和聚(d,l-丙交酯-共-乙交酯)(PLGA)微球的应用广泛用于生物医学和制药领域。由于无法控制的粒径和粒径分布,使用常规颗粒制备方法时,PLA / PLGA对微球性能的影响不易确定。这项研究的目的是使用酚醛树脂基微流体芯片合成均匀的PLA和PLGA微球,该芯片具有耐溶剂性,柔韧性好且易于拆卸清洗的优点。提出的芯片可以快速制造可再现的PLA和PLGA微球。可以通过流体动力流聚焦获得均匀的乳液滴。溶剂蒸发后,自由流动的PLA和PLGA微球具有很高的形态均匀性和尺寸,从而可以对材料效果进行清晰的比较。结果表明,对于分散/连续相的各种流速,PLA和PLGA微球的尺寸非常相似。 PLA / PLGA材料对粒度没有明显影响,但是颗粒表面显示出不同的形态。细胞毒性评估的结果表明PLA和PLGA之间没有差异,并确保了将来制备的PLA和PLGA微球在生物医学和制药方面的生物相容性。

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