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Preparation and Evaluation of Polyactin Microparticles from Supercritical CO{sub}2 Processing

机译:超临界Co {} 2加工的聚酰胺微粒的制备与评价

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This paper reports the use of a coating process based on supercritical fluid technology to prepare a solvent-free microparticles, loaded with a polymannopeptide (polyactin, PAA) for enhanceing optimal host response in cancer immunotherapy. Microparticles were characterized as regards their morphology, drug content and in vitro release. A prolonged release of the PAA had been achieved over a 24 h period from microparticles coated with the lipidic compound, which produced a more homogeneous, film-forming coating. Furthermore, it was shown that PAA did not undergo any degradation under the supercritical conditions used in the coating process. In vitro immunoactivity and anti-tumor effect analysis results showed that the PAA microsphere could efficiently trigger the induction of cytotoxic T lymphocytes (CTL) in a sustained manner.
机译:本文报道了基于超临界流体技术的涂布过程的用途,制备无溶剂的微粒,该溶剂微粒加载着多人肽(聚酰胺,PAA),用于增强癌症免疫疗法的最佳宿主反应。以其形态,药物含量和体外释放的形式表征微粒。在涂有脂质化合物的微粒的24小时内,通过涂有更均匀的成膜涂层,延长了PAA的延长释放。此外,表明PAA在涂布过程中使用的超临界条件下没有发生任何降解。体外免疫活性和抗肿瘤效应分析结果表明,PAA微球可以以持续的方式有效地触发细胞毒性T淋巴细胞(CTL)的诱导。

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