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首页> 外文期刊>Chemical and Pharmaceutical Bulletin >A New Drag Delivery System Using Plasma-Irradiated Pharmaceutical Aids. VII. Controlled Release of Theophylline from Plasma-Irradiated Polymer-Coated Granules
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A New Drag Delivery System Using Plasma-Irradiated Pharmaceutical Aids. VII. Controlled Release of Theophylline from Plasma-Irradiated Polymer-Coated Granules

机译:一种使用等离子体辐照的制药艾滋病的新阻力传递系统。 VII。 从等离子体辐照的聚合物涂层颗粒控制培养的茶碱

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摘要

With a view to expanding the application of a drug delivery system (DDS) preparation using plasma-irradiated pharmaceutical aids for various dosage forms, we studied the theophylline release property from plasma-irradiated polymer-coated granules, the polymers of which differ in the plasma irradiation effect. We used a new type of rotational plasma-irradiation reactor to perform plasma-irradiation uniformly on the surface of polymer-coated granules based on scanning electron microscope (SEM) observation. It was shown that an increase in theophylline release rate with an increase in plasma duration was observed in all polymer-coated granules, although the factors of such release properties vary with the polymers, as evidenced by the SEM observations. Such results provided the criteria for selecting polymer structures for granule coating. Thus, the present method for the control of drug release is considered principally applicable not only to polymer-coated granules but also to various drug forms under consideration of the above criteria.
机译:为了扩展药物递送系统(DDS)制剂的应用,使用血浆辐照的药物助剂进行各种剂型,我们研究了来自等离子体辐照的聚合物涂层颗粒的茶碱脱模性,其聚合物在血浆中不同辐照效应。我们使用了一种新型的旋转等离子体辐射反应器,在基于扫描电子显微镜(SEM)观察的聚合物涂覆的颗粒表面上均匀地进行等离子体辐射。结果表明,在所有聚合物涂覆的颗粒中观察到具有血浆持续时间的增加的细胞释放速率的增加,尽管这种释放特性的因素与聚合物变化,所以通过SEM观察结果证明。这些结果提供了选择用于颗粒涂层的聚合物结构的标准。因此,认为本发明的用于控制药物释放的方法主要是不仅适用于聚合物涂覆的颗粒,而且还适用于考虑上述标准的各种药物形式。

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