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Progress in Photo-Responsive Polypeptide Derived Nano-Assemblies

机译:光响应多肽衍生的纳米组件的研究进展。

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摘要

Stimuli-responsive polymeric materials have attracted significant attention in a variety of high-value-added and industrial applications during the past decade. Among various stimuli, light is of particular interest as a stimulus because of its unique advantages, such as precisely spatiotemporal control, mild conditions, ease of use, and tunability. In recent years, a lot of effort towards the synthesis of a biocompatible and biodegradable polypeptide has resulted in many examples of photo-responsive nanoparticles. Depending on the specific photochemistry, those polypeptide derived nano-assemblies are capable of crosslinking, disassembling, or morphing into other shapes upon light irradiation. In this review, we aim to assess the current state of photo-responsive polypeptide based nanomaterials. Firstly, those ‘smart’ nanomaterials will be categorized by their photo-triggered events (i.e., crosslinking, degradation, and isomerization), which are inherently governed by photo-sensitive functionalities, including O-nitrobenzyl, coumarin, azobenzene, cinnamyl, and spiropyran. In addition, the properties and applications of those polypeptide nanomaterials will be highlighted as well. Finally, the current challenges and future directions of this subject will be evaluated.
机译:在过去的十年中,刺激响应性聚合物材料在各种高附加值和工业应用中引起了极大的关注。在各种刺激中,光作为一种刺激特别受关注,因为它具有独特的优势,例如精确的时空控制,温和的条件,易于使用和可调性。近年来,在合成生物相容性和可生物降解多肽方面的大量努力已经产生了许多光响应性纳米颗粒的实例。取决于特定的光化学,那些多肽衍生的纳米组件能够在光照射下交联,分解或变形为其他形状。在这篇综述中,我们旨在评估基于光响应多肽的纳米材料的当前状态。首先,这些“智能”纳米材料将根据其光触发事件(即交联,降解和异构化)进行分类,这些事件固有地受光敏功能控制,包括O-硝基苄基,香豆素,偶氮苯,肉桂基和螺吡喃。另外,还将突出那些多肽纳米材料的特性和应用。最后,将评估该主题的当前挑战和未来方向。

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