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热熔挤出技术的药物应用:第二部分。

Pharmaceutical applications of hot-melt extrusion: Part II.

作者信息

Repka Michael A, Battu Sunil Kumar, Upadhye Sampada B, Thumma Sridhar, Crowley Michael M, Zhang Feng, Martin Charles, McGinity James W

机构信息

Department of Pharmaceutics, School of Pharmacy, The University of Mississippi, University, MS 38677, USA.

出版信息

Drug Dev Ind Pharm. 2007 Oct;33(10):1043-57. doi: 10.1080/03639040701525627.

Abstract

The advent of high through-put screening in the drug discovery process has resulted in compounds with high lipophilicity and poor solubility. Increasing the solubility of such compounds poses a major challenge to formulation scientists. Various approaches have been adopted to address this including preparation of solid dispersions and solid solutions. Hot-melt extrusion is an efficient technology for producing solid molecular dispersions with considerable advantages over solvent-based processes such as spray drying and co-precipitation. Hot-melt extrusion has been demonstrated to provide sustained, modified, and targeted drug delivery. Improvements in bioavailability utilizing the hot-melt extrusion technique demonstrate the value of the technology as a potential drug delivery processing tool. The interest in hot-melt extrusion technology for pharmaceutical applications is evident from the increasing number of patents and publications in the scientific literature. Part II of this article reviews the myriad of hot-melt extrusion applications for pharmaceutical dosage forms including granules, pellets, tablets, implants, transmucosal, and transdermal systems.

摘要

在药物研发过程中,高通量筛选的出现导致了具有高亲脂性和低溶解度的化合物的产生。提高此类化合物的溶解度对制剂科学家构成了重大挑战。人们采用了各种方法来解决这一问题,包括制备固体分散体和固溶体。热熔挤出是一种生产固体分子分散体的有效技术,与喷雾干燥和共沉淀等基于溶剂的工艺相比具有相当大的优势。热熔挤出已被证明可提供持续、改良和靶向给药。利用热熔挤出技术提高生物利用度证明了该技术作为潜在药物递送加工工具的价值。科学文献中专利和出版物数量的增加表明了对热熔挤出技术在制药应用方面的兴趣。本文第二部分综述了热熔挤出在药物剂型中的众多应用,包括颗粒剂、丸剂、片剂、植入剂、透粘膜和透皮系统。

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