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智能聚合物的刺激响应性药物释放

Stimuli-Responsive Drug Release from Smart Polymers.

作者信息

Wells Carlos M, Harris Michael, Choi Landon, Murali Vishnu Priya, Guerra Fernanda Delbuque, Jennings J Amber

机构信息

Department of Biomedical Engineering, The University of Memphis, Memphis, TN 38152, USA.

出版信息

J Funct Biomater. 2019 Jul 31;10(3):34. doi: 10.3390/jfb10030034.

Abstract

Over the past 10 years, stimuli-responsive polymeric biomaterials have emerged as effective systems for the delivery of therapeutics. Persistent with ongoing efforts to minimize adverse effects, stimuli-responsive biomaterials are designed to release in response to either chemical, physical, or biological triggers. The stimuli-responsiveness of smart biomaterials may improve spatiotemporal specificity of release. The material design may be used to tailor smart polymers to release a drug when particular stimuli are present. Smart biomaterials may use internal or external stimuli as triggering mechanisms. Internal stimuli-responsive smart biomaterials include those that respond to specific enzymes or changes in microenvironment pH; external stimuli can consist of electromagnetic, light, or acoustic energy; with some smart biomaterials responding to multiple stimuli. This review looks at current and evolving stimuli-responsive polymeric biomaterials in their proposed applications.

摘要

在过去十年中,刺激响应性高分子生物材料已成为有效的治疗药物递送系统。为了持续努力将不良反应降至最低,刺激响应性生物材料被设计为可响应化学、物理或生物触发因素而释放药物。智能生物材料的刺激响应性可提高释放的时空特异性。材料设计可用于定制智能聚合物,使其在特定刺激出现时释放药物。智能生物材料可利用内部或外部刺激作为触发机制。内部刺激响应性智能生物材料包括那些对特定酶或微环境pH值变化作出反应的材料;外部刺激可以包括电磁、光或声能;有些智能生物材料对多种刺激作出反应。本综述探讨了当前及不断发展的刺激响应性高分子生物材料在其拟议应用中的情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b206/6787590/3fe0961f35de/jfb-10-00034-g001.jpg

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