Hu Huiyang, Busa Prabhakar, Zhao Yue, Zhao Chao
Department of Chemical and Biological Engineering, University of Alabama, Tuscaloosa, AL, 35487, USA.
School of Computer Science, College of Science, Mathematics and Technology, Wenzhou-Kean University, Wenzhou, China.
Smart Mater Med. 2024 Sep;5(3):386-408. doi: 10.1016/j.smaim.2024.08.004. Epub 2024 Aug 30.
Externally triggered drug delivery systems empower patients or healthcare providers to utilize external stimuli to initiate drug release from implanted systems. This approach holds significant potential for clinical disease management, offering appealing features like enhanced patient adherence through the elimination of needles and medication reminders. Additionally, it facilitates personalized medicine by granting patients control over the timing, dosage, and duration of drug release. Moreover, it enables precise drug delivery to targeted locations where external stimuli are applied. Advances in materials science, nanotechnology, chemistry, and biology have been pivotal in driving the development of these systems. This review presents an overview of the progress in research on drug release systems responsive to external stimuli, such as light, ultrasound, magnetic fields, and temperature. It discusses the construction strategies of externally triggered drug delivery systems, the mechanisms governing triggered drug release, and their applications in disease management.
外部触发式药物递送系统使患者或医疗保健提供者能够利用外部刺激来启动植入系统中的药物释放。这种方法在临床疾病管理方面具有巨大潜力,具有诸多吸引人的特性,例如通过消除针头和用药提醒来提高患者依从性。此外,它通过赋予患者对药物释放的时间、剂量和持续时间的控制权来促进个性化医疗。而且,它能够将药物精确递送至施加外部刺激的目标位置。材料科学、纳米技术、化学和生物学的进展在推动这些系统的发展中发挥了关键作用。本综述概述了对光、超声、磁场和温度等外部刺激响应的药物释放系统的研究进展。它讨论了外部触发式药物递送系统的构建策略、触发药物释放的机制及其在疾病管理中的应用。