Department of Mechanical Engineering, University College London, Torrington Place, London WC1E 7JE, UK.
J R Soc Interface. 2011 Mar 6;8(56):451-6. doi: 10.1098/rsif.2010.0428. Epub 2010 Oct 13.
Drug-delivery systems with a unique capability to respond to a given stimulus can improve therapeutic efficacy. However, development of such systems is currently heavily reliant on responsive polymeric materials and pursuing this singular strategy limits the potential for clinical translation. In this report, with a model system used for drug-release studies, we demonstrate a new strategy: how a temperature-responsive non-toxic, volatile liquid can be encapsulated and stored under ambient conditions and subsequently programmed for controlled drug release without relying on a smart polymer. When the stimulus temperature is reached, controlled encapsulation of different amounts of dye in the capsules is achieved and facilitates subsequent sustained release. With different ratios of the liquid (perfluorohexane): dye in the capsules, enhanced controlled release with real-time response is provided. Hence, our findings offer great potential for drug-delivery applications and provide new generic insights into the development of stimuli drug-release systems.
具有独特响应给定刺激能力的药物输送系统可以提高治疗效果。然而,此类系统的开发目前严重依赖于响应性聚合物材料,而仅采用这种单一策略限制了临床转化的潜力。在本报告中,我们使用用于药物释放研究的模型系统展示了一种新策略:如何封装和储存无毒、易挥发的温度响应性液体,使其在不依赖智能聚合物的情况下进行控释。当达到刺激温度时,可实现不同量染料在胶囊中的受控封装,并促进随后的持续释放。通过改变胶囊中液体(全氟己烷)与染料的不同比例,可以提供具有实时响应的增强型控释。因此,我们的发现为药物输送应用提供了巨大的潜力,并为刺激药物释放系统的开发提供了新的一般性见解。