School of Engineering and Applied Sciences, Harvard University, Cambridge, MA 02138, USA.
J Biol Eng. 2010 Nov 29;4:15. doi: 10.1186/1754-1611-4-15.
For years, the field of drug delivery has focused on (1) controlling the release of a therapeutic and (2) targeting the therapeutic to a specific cell type. These research endeavors have concentrated mainly on the development of new degradable polymers and molecule-labeled drug delivery vehicles. Recent interest in biomaterials that respond to their environment have opened new methods to trigger the release of drugs and localize the therapeutic within a particular site. These novel biomaterials, usually termed "smart" or "intelligent", are able to deliver a therapeutic agent based on either environmental cues or a remote stimulus. Stimuli-responsive materials could potentially elicit a therapeutically effective dose without adverse side effects. Polymers responding to different stimuli, such as pH, light, temperature, ultrasound, magnetism, or biomolecules have been investigated as potential drug delivery vehicles. This review describes the most recent advances in "smart" drug delivery systems that respond to one or multiple stimuli.
多年来,药物输送领域一直专注于(1)控制治疗药物的释放和(2)将治疗药物靶向特定的细胞类型。这些研究主要集中在开发新的可降解聚合物和分子标记的药物输送载体上。最近,人们对能够响应环境的生物材料产生了兴趣,这为触发药物释放和将治疗药物定位在特定部位提供了新的方法。这些新型生物材料通常被称为“智能”或“智能”,能够根据环境线索或远程刺激来输送治疗剂。刺激响应材料有可能在没有不良反应的情况下引发治疗有效剂量。已经研究了对不同刺激(如 pH 值、光、温度、超声、磁场或生物分子)作出反应的聚合物作为潜在的药物输送载体。本文综述了对一种或多种刺激作出响应的“智能”药物输送系统的最新进展。