用于生物分子传感的分子印迹光子晶体

Wei Chen, Zi-hui Meng, Min Xue, K. Shea
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引用次数: 39

摘要

分子印迹聚合物(MIPs)是一种高度交联的聚合物,对靶分子具有高的结合能力和选择性。由于在药物输送、纯化和分离方面的潜在应用,MIPs变得越来越重要。尽管在分子印迹领域取得了巨大的进展,但仍有许多挑战有待解决,特别是如何将结合事件转化为可检测的光信号。光子晶体与分子印迹技术的结合正在成为一种流行的研究思路。与传统的分子印迹光子晶体传感器相比,分子印迹光子晶体传感器具有将分子识别过程直接转化为光信号的优点。本文综述了分子印迹光子晶体传感器的原理、最新发展、面临的挑战和有效的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular imprinted photonic crystal for sensing of biomolecules
Abstract Molecularly imprinted polymers (MIPs) are highly cross-linked polymers with high binding capacity and selectivity to the target molecules. MIPs become increasingly important because of the potential applications in drug delivery, purification and separation. In spite of the tremendous progress that has been made in the molecular imprinting field, many challenges remain to be addressed, especially in transforming the binding event into a detectable optical signal. The combination of photonic crystal and molecular imprinting technique is becoming a popular research idea. Compared to the conventional MIPs, the molecularly imprinted photonic crystal sensors (MIPCB) have the advantage of directly convert the molecule recognition process into optical signal. This review comprehensively summarizes various MIPCB, including the principle of molecular imprinted photonic crystal sensors, recent development, some challenges and effective strategies for MIPCB.
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