Laboratory of Pharmaceutical Technology, Department of Pharmaceutics, Ghent University, Harelbekestraat 72, 9000 Ghent, Belgium.
Angew Chem Int Ed Engl. 2010 Sep 17;49(39):6954-73. doi: 10.1002/anie.200906266.
Recent advances in medicine and biotechnology have prompted the need to develop nanoengineered delivery systems that can encapsulate a wide variety of novel therapeutics such as proteins, chemotherapeutics, and nucleic acids. Moreover, these delivery systems should be "intelligent", such that they can deliver their payload at a well-defined time, place, or after a specific stimulus. Polymeric multilayer capsules, made by layer-by-layer (LbL) coating of a sacrificial template followed by dissolution of the template, allow the design of microcapsules in aqueous conditions by using simple building blocks and assembly procedures, and provide a previously unmet control over the functionality of the microcapsules. Polymeric multilayer capsules have recently received increased interest from the life science community, and many interesting systems have appeared in the literature with biodegradable components and biospecific functionalities. In this Review we give an overview of the recent breakthroughs in their application for drug delivery.
近年来,医学和生物技术的进步促使人们开发出能够封装各种新型治疗药物的纳米工程给药系统,如蛋白质、化疗药物和核酸。此外,这些给药系统应该是“智能”的,以便能够在特定的时间、地点或在特定刺激后释放其有效载荷。通过层层(LbL)包覆牺牲模板,然后溶解模板,可以制备聚合物多层胶囊,这使得可以在水相条件下使用简单的构建块和组装程序设计微胶囊,并对微胶囊的功能进行以前无法实现的控制。聚合物多层胶囊最近受到生命科学界的广泛关注,并且文献中出现了许多具有生物降解成分和生物特异性功能的有趣系统。在这篇综述中,我们概述了它们在药物输送中的应用的最新突破。