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Biomimetic Strategies for Sensing Biological Species

机译:模仿生物物种的仿生策略

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摘要

The starting point of modern biosensing was the application of actual biological species for recognition. Increasing understanding of the principles underlying such recognition (and biofunctionality in general), however, has triggered a dynamic field in chemistry and materials sciences that aims at joining the best of two worlds by combining concepts derived from nature with the processability of manmade materials, e.g., sensitivity and ruggedness. This review covers different biomimetic strategies leading to highly selective (bio)chemical sensors: the first section covers molecularly imprinted polymers (MIP) that attempt to generate a fully artificial, macromolecular mold of a species in order to detect it selectively. A different strategy comprises of devising polymer coatings to change the biocompatibility of surfaces that can also be used to immobilized natural receptors/ligands and thus stabilize them. Rationally speaking, this leads to self-assembled monolayers closely resembling cell membranes, sometimes also including bioreceptors. Finally, this review will highlight some approaches to generate artificial analogs of natural recognition materials and biomimetic approaches in nanotechnology. It mainly focuses on the literature published since 2005.
机译:现代生物传感的起点是应用实际的生物物种进行识别。但是,对这种识别原理(以及一般而言的生物功能性)的日益了解,引发了化学和材料科学领域的一个动态领域,该领域旨在通过将自然界的概念与人造材料的可加工性相结合,从而将两个世界的精华融合在一起。 ,灵敏度和坚固性。这篇综述涵盖了导致高选择性(bio)chemical传感器的不同仿生策略:第一部分介绍了分子印迹聚合物(MIP),它们试图产生物种的完全人工的,大分子的霉菌,以便对其进行选择性检测。不同的策略包括设计聚合物涂层以改变表面的生物相容性,所述表面也可用于固定天然受体/配体并由此使其稳定。合理地讲,这会导致自组装的单层细胞膜非常相似,有时还包括生物受体。最后,本文将重点介绍一些生成自然识别材料的人工类似物的方法以及纳米技术中的仿生方法。它主要侧重于2005年以来发表的文献。

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