Cross Michael C, Toomey Ryan G, Gallant Nathan D
Department of Physics, University of South Florida, Tampa, FL 33620, USA.
Biomed Mater. 2016 Mar 4;11(2):022002. doi: 10.1088/1748-6041/11/2/022002.
Responsive surfaces: a review of the dependence of protein adsorption on the reversible volume phase transition in stimuli-responsive polymers. Specifically addressed are a widely studied subset: thermoresponsive polymers. Findings are also generalizable to other materials which undergo a similarly reversible volume phase transition. As of 2015, over 100,000 articles have been published on stimuli-responsive polymers and many more on protein-biomaterial interactions. Significantly, fewer than 100 of these have focused specifically on protein interactions with stimuli-responsive polymers. These report a clear trend of increased protein adsorption in the collapsed state compared to the swollen state. This control over protein interactions makes stimuli-responsive polymers highly useful in biomedical applications such as wound repair scaffolds, on-demand drug delivery, and antifouling surfaces. Outstanding questions are whether the protein adsorption is reversible with the volume phase transition and whether there is a time-dependence. A clear understanding of protein interactions with stimuli-responsive polymers will advance theoretical models, experimental results, and biomedical applications.
响应性表面:蛋白质吸附对刺激响应性聚合物中可逆体积相变的依赖性综述。特别讨论的是一个广泛研究的子集:热响应性聚合物。研究结果也适用于其他经历类似可逆体积相变的材料。截至2015年,关于刺激响应性聚合物已发表了超过10万篇文章,关于蛋白质与生物材料相互作用的文章更多。值得注意的是,其中专门关注蛋白质与刺激响应性聚合物相互作用的文章不到100篇。这些文章报道了一个明显的趋势,即与溶胀状态相比,塌陷状态下蛋白质吸附增加。对蛋白质相互作用的这种控制使得刺激响应性聚合物在生物医学应用中非常有用,如伤口修复支架、按需给药和防污表面。悬而未决的问题是蛋白质吸附是否随体积相变可逆以及是否存在时间依赖性。对蛋白质与刺激响应性聚合物相互作用的清晰理解将推动理论模型、实验结果和生物医学应用的发展。
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