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'Thunderstruck': Plasma-Polymer-Coated Porous Silicon Microparticles As a Controlled Drug Delivery System

机译:“雷击”:血浆聚合物涂层的多孔硅微粒作为受控的药物输送系统

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Controlling the release kinetics from a drug carrier is crucial to maintain a drug's therapeutic window. We report the use of biodegradable porous silicon microparticles (pSi MPs) loaded with the anticancer drug camphothecin, followed by a plasma polymer overcoating using a loudspeaker plasma reactor. Homogenous "Teflon-like" coatings were achieved by tumbling the particles by playing AC/DC's song "Thunderstruck". The overcoating resulted in a markedly slower release of the cytotoxic drug, and this effect correlated positively with the plasma polymer coating times, ranging from 2-fold up to more than 100-fold. Ultimately, upon characterizing and verifying pSi MP production, loading, and coating with analytical methods such as time-of flight secondary ion mass spectrometry, scanning electron microscopy, thermal gravimetry, water contact angle measurements, and fluorescence microscopy, human neuroblastoma cells were challenged with pSi MPs in an in-vitro assay, revealing a significant time delay in cell death onset.
机译:控制从药物载体释放的动力学对于维持药物的治疗窗口至关重要。我们报告了使用抗癌药物喜树碱负载的可生物降解的多孔硅微粒(pSi MPs),然后使用扬声器等离子体反应器进行等离子体聚合物外涂层。通过播放AC / DC的歌曲“ Thunderstruck”使颗粒翻滚,可以实现同质的“特氟龙状”涂层。外涂层导致细胞毒性药物的释放明显减慢,并且这种作用与血浆聚合物涂层时间呈正相关,范围是2倍至100倍以上。最终,在通过分析方法(例如飞行时间二次离子质谱,扫描电子显微镜,热重分析,水接触角测量和荧光显微镜)表征和验证pSi MP的生产,负载和涂层后,人类神经母细胞瘤细胞受到了挑战。 pSi MPs在体外测定中,揭示了细胞死亡发作的显着时间延迟。

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