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Orthogonal Surface Functionalization Through Bioactive Vapor-Based Polymer Coatings

机译:通过生物活性蒸气基聚合物涂层进行正交表面功能化

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摘要

Reactive chemical vapor deposition (CVD) polymerization provides a substrate-independent platform for effective functionalization of virtually any solid substrates, flat, or curved, even with complex geometries. This article reviews bioactive surface functionalization strategies based on CVD polymerization and highlights commonly used surface chemistries. These reactions include alkyne-azide "click" chemistry, reactions of active esters with amine, aldehydes/ketones with hydrazides and alkoxyamines, thiols with alkenes and alkynes and surface-initiated atom transfer radical polymerization. The resulting biofunctional surface coatings can facilitate orthogonal immobilization of more than one type of ligand on a substrate. CVD polymer coatings with nanoscale thicknesses are widely applicable in biomedical applications and can be easily integrated into micro- and nanodevice fabrication.
机译:反应性化学气相沉积(CVD)聚合提供了独立于基材的平台,可有效地功能化几乎所有平坦或弯曲的固体基材,甚至具有复杂的几何形状。本文回顾了基于CVD聚合的生物活性表面功能化策略,并重点介绍了常用的表面化学。这些反应包括炔烃-叠氮化物的“喀哒”化学反应,活性酯与胺的反应,醛/酮与酰肼和烷氧基胺的反应,硫醇与烯烃和炔烃的反应以及表面引发的原子转移自由基聚合。所得的生物功能表面涂层可以促进一种以上类型的配体在基质上的正交固定。具有纳米级厚度的CVD聚合物涂层广泛应用于生物医学应用,并且可以轻松地集成到微型和纳米器件的制造中。

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