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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Preparation and in vitro and in vivo release studies of Huperzine A loaded microspheres for the treatment of Alzheimer's disease
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Preparation and in vitro and in vivo release studies of Huperzine A loaded microspheres for the treatment of Alzheimer's disease

机译:石杉碱甲微球的制备及其体外和体内释放研究,用于治疗阿尔茨海默氏病

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摘要

The purpose of this study was to prepare microspheres containing Huperzine A, which is used for patients suffering from Alzheimer's disease because of its potent anticholincestase activity, and to clarify in vitro and in: vivo release characteristics of them. The preparation and in vitro and in vivo release studies of Huperzine A loaded microspheres were described. By spray drying method, Huperzine A was encapsulated successfully in the microspheres which were spherical with a non-porous and smooth surface. In vitro studies showed that the release of Huperzine A from microspheres was depended on the properties of polymers and the release medium. Counter-ionic interaction between the primary amine group of Huperzine A and the carboxylic terminal group of PLG polymers improves the encapsulation of Huperzine A, reducing the initial burst and extending the sustained release. High molecular weight of PLG polymer leads to a negative influence on sustained release of Huperzine A due to less carboxylic terminal groups. Acidic medium also reduces the initial burst and sustained the release due to decreased swelling of the polymeric matrix. In vivo experiment showed, after intramuscular injection, that the plasma concentration of Huperzine A reached the max. at 2 h, then fell rapidly to a stable and near constant level of 0.5 to 2.5 ng/ml within 2 weeks, until the drug was exhausted from the microspheres. It indicates the potential of a 2-week sustained release system of Huperzine A. (c) 2005 Elsevier B.V. All rights reserved.
机译:这项研究的目的是制备含有石杉碱甲的微球,由于其有效的抗胆碱酯酶活性,该石蜡被用于患有阿尔茨海默氏病的患者,并阐明其体外和体内释放特征。描述了石杉碱甲微球的制备以及体外和体内释放研究。通过喷雾干燥法,石杉碱甲被成功地包裹在具有无孔和光滑表面的球形微球中。体外研究表明石杉碱甲从微球的释放取决于聚合物的性质和释放介质。石杉碱甲的伯胺基团与PLG聚合物的羧基端基之间的反离子相互作用改善了石杉碱甲的包封性,减少了初始破裂并延长了持续释放。 PLG聚合物的高分子量由于较少的羧基端基而对石杉碱甲的持续释放产生负面影响。由于聚合物基质的溶胀降低,酸性介质还减少了初始破裂并维持了释放。体内实验表明,肌肉注射后,石杉碱甲的血浆浓度达到最大值。在2小时后,然后在2周内迅速降至0.5至2.5 ng / ml的稳定和接近恒定的水平,直到药物从微球中耗尽。它表明石杉碱甲为期2周的持续释放系统的潜力。(c)2005 Elsevier B.V.保留所有权利。

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