Muller Rainer H, Keck Cornelia M
Department of Pharmaceutics, Biopharmaceutics and Biotechnology, Free University of Berlin, Germany.
J Biotechnol. 2004 Sep 30;113(1-3):151-70. doi: 10.1016/j.jbiotec.2004.06.007.
Biotechnology allows tailor-made production of biopharmaceuticals and biotechnological drugs; however, many of them require special formulation technologies to overcome drug-associated problems. Such potential challenges to solve are: poor solubility, limited chemical stability in vitro and in vivo after administration (i.e. short half-life), poor bioavailability and potentially strong side effects requiring drug enrichment at the site of action (targeting). This review describes the use of nanoparticulate carriers, developed in our research group, as one solution to overcome such delivery problems, i.e. drug nanocrystals, solid lipid nanoparticles (SLN), nanostructured lipid carriers (NLC) and lipid-drug conjugate (LDC) nanoparticles, examples of drugs are given. As a recently developed targeting principle, the concept of differential protein adsorption is described (PathFinder Technology) using as example delivery to the brain.
生物技术可实现生物制药和生物技术药物的定制生产;然而,其中许多药物需要特殊的制剂技术来克服与药物相关的问题。有待解决的潜在挑战包括:溶解度差、给药后在体外和体内的化学稳定性有限(即半衰期短)、生物利用度低以及可能存在较强的副作用,需要在作用部位进行药物富集(靶向)。本综述介绍了我们研究小组开发的纳米颗粒载体作为克服此类给药问题的一种解决方案,即药物纳米晶体、固体脂质纳米粒(SLN)、纳米结构脂质载体(NLC)和脂质-药物缀合物(LDC)纳米粒,并给出了药物实例。作为一种最近开发的靶向原理,以脑内给药为例描述了差异蛋白吸附的概念(PathFinder技术)。