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首页> 外文期刊>Pharmaceutical development and technology >Microparticulated anti-HIV vaginal gel: in vitro-in vivo drug release and vaginal irritation study.
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Microparticulated anti-HIV vaginal gel: in vitro-in vivo drug release and vaginal irritation study.

机译:微粒化的抗HIV阴道凝胶:体外-体内药物释放和阴道刺激性研究。

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摘要

The aim of this study was to develop and evaluate a Zidovudine (AZT)-loaded microparticulated bioadhesive vaginal gel (MBVG) in order to obtain a controlled releasing, safe gel delivery system. AZT microparticles (ZMPs) were evaluated for encapsulation efficiency, drug loading, surface morphology and in vitro drug release profiles and drug release mechanism and optimized. The optimized ZMPs were then encompassed in bioadhesive gel using different bioadhesive polymers and evaluated for the drug encapsulation efficiency, drug loading, in vitro and in vivo drug release profiles, drug release mechanism and vaginal irritancy study. From the dissolution data of ZMP4 and MBVG4 showed a zero-order diffusion pattern and Fickian diffusion case I transport mechanism in 24 and 36?h, respectively. On the basis of a pharmacokinetic study of MBVG4 (containing ZMP: Carbopol 1:4), it was found to have better bioavailability, larger AUC and T(max) in comparison to an oral pure suspension of AZT.
机译:这项研究的目的是开发和评估载有齐多夫定(AZT)的微粒化生物粘附阴道凝胶(MBVG),以便获得可控释放的安全凝胶递送系统。评估了AZT微粒(ZMP)的包封效率,载药量,表面形态和体外药物释放曲线以及药物释放机理并进行了优化。然后,使用不同的生物粘附聚合物将优化的ZMP包含在生物粘附凝胶中,并评估药物封装效率,药物载量,体内外药物释放曲线,药物释放机理和阴道刺激性研究。从ZMP4和MBVG4的溶出数据来看,分别在24?h和36?h内出现了零阶扩散模式和Fickian扩散情况I的迁移机理。根据MBVG4(含ZMP:Carbopol 1:4)的药代动力学研究,与口服AZT纯悬液相比,它具有更好的生物利用度,更大的AUC和T(max)。

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