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纳米晶体技术、药物递送与临床应用。

Nanocrystal technology, drug delivery and clinical applications.

作者信息

Junghanns Jens-Uwe A H, Müller Rainer H

机构信息

Department of Pharmaceutical Technology, Biotechnology and Quality Management, Free University of Berlin, Berlin, Germany.

出版信息

Int J Nanomedicine. 2008;3(3):295-309. doi: 10.2147/ijn.s595.

Abstract

Nanotechnology will affect our lives tremendously over the next decade in very different fields, including medicine and pharmacy. Transfer of materials into the nanodimension changes their physical properties which were used in pharmaceutics to develop a new innovative formulation principle for poorly soluble drugs: the drug nanocrystals. The drug nanocrystals do not belong to the future; the first products are already on the market. The industrially relevant production technologies, pearl milling and high pressure homogenization, are reviewed. The physics behind the drug nanocrystals and changes of their physical properties are discussed. The marketed products are presented and the special physical effects ofnanocrystals explained which are utilized in each market product. Examples of products in the development pipelines (clinical phases) are presented and the benefits for in vivo administration of drug nanocrystals are summarized in an overview.

摘要

在接下来的十年里,纳米技术将在包括医学和制药在内的非常不同的领域极大地影响我们的生活。将材料转变到纳米尺度会改变它们的物理性质,这些性质在pharmaceutics中被用于开发一种针对难溶性药物的全新创新制剂原理:药物纳米晶体。药物纳米晶体并非属于未来;首批产品已经上市。本文综述了工业上相关的生产技术,即珠磨法和高压均质法。讨论了药物纳米晶体背后的物理学原理及其物理性质的变化。介绍了已上市产品,并解释了每种市场产品中所利用的纳米晶体的特殊物理效应。还展示了处于研发管线(临床阶段)的产品实例,并在概述中总结了药物纳米晶体体内给药的益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a438/2626933/6d39e93b945a/ijn-3-295f1.jpg

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