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Application of drug nanocrystal technologies on oral drug delivery of poorly soluble drugs

机译:药物纳米晶体技术在难溶药物口服给药中的应用

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The limited solubility and dissolution rate exhibited by poorly soluble drugs is major challenges in the pharmaceutical process. Following oral administration, the poorly soluble drugs generally show a low and erratic bioavailability which may lead to therapeutic failure. Pure drug nanocrystals, generated by "bottom up" or "top down" technologies, facilitate a significant improvement on dissolution behavior of poorly soluble drugs due to their enormous surface area, which in turn lead to substantial improvement in oral absorption. This is the most distinguished achievement of drug nanocrystals among their performances in various administration routes, reflected by the fact that most of the marketed products based on the nanocrystals technology are for oral application. After detailed investigations on various technologies associated with production of drug nanocrystals and their in vitro physicochemical properties, during the last decade more attentions have been paid into their in vivo behaviors. This review mainly describes the in vivo performances of oral drug nanocrystals exhibited in animals related to the pharmacokinetic, efficacy and safety characteristics. The technologies and evaluation associated with the solidification process of the drug nanocrystals suspensions were also discussed in detail. ? 2012 Springer Science+Business Media New York.
机译:难溶性药物表现出的有限的溶解度和溶解速率是制药过程中的主要挑战。口服给药后,难溶性药物通常显示出低而不稳定的生物利用度,这可能导致治疗失败。通过“自下而上”或“自上而下”技术生成的纯药物纳米晶体,由于其巨大的表面积,大大促进了难溶性药物的溶解行为的显着改善,进而导致口服吸收的显着改善。这是药物纳米晶体在各种给药途径中的表现中最杰出的成就,这反映在以下事实上:大多数基于纳米晶体技术的市售产品都用于口服。在详细研究了与药物纳米晶体生产相关的各种技术及其体外物理化学性质后,在过去的十年中,人们对它们的体内行为给予了更多关注。这篇综述主要描述了在动物体内表现出的与药物动力学,功效和安全性特征有关的口服药物纳米晶体的体内性能。还详细讨论了与药物纳米晶体悬浮液固化过程相关的技术和评估。 ? 2012年Springer Science + Business Media纽约。

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