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Functional Polymers in Protein Detection Platforms: Optical Electrochemical Electrical Mass-Sensitive and Magnetic Biosensors

机译:蛋白质检测平台中的功能聚合物:光学电化学电质量敏感和磁性生物传感器

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摘要

The rapidly growing field of proteomics and related applied sectors in the life sciences demands convenient methodologies for detecting and measuring the levels of specific proteins as well as for screening and analyzing for interacting protein systems. Materials utilized for such protein detection and measurement platforms should meet particular specifications which include ease-of-mass manufacture, biological stability, chemical functionality, cost effectiveness, and portability. Polymers can satisfy many of these requirements and are often considered as choice materials in various biological detection platforms. Therefore, tremendous research efforts have been made for developing new polymers both in macroscopic and nanoscopic length scales as well as applying existing polymeric materials for protein measurements. In this review article, both conventional and alternative techniques for protein detection are overviewed while focusing on the use of various polymeric materials in different protein sensing technologies. Among many available detection mechanisms, most common approaches such as optical, electrochemical, electrical, mass-sensitive, and magnetic methods are comprehensively discussed in this article. Desired properties of polymers exploited for each type of protein detection approach are summarized. Current challenges associated with the application of polymeric materials are examined in each protein detection category. Difficulties facing both quantitative and qualitative protein measurements are also identified. The latest efforts on the development and evaluation of nanoscale polymeric systems for improved protein detection are also discussed from the standpoint of quantitative and qualitative measurements. Finally, future research directions towards further advancements in the field are considered.
机译:生命科学领域中蛋白质组学和相关应用领域的飞速发展,需要便捷的方法来检测和测量特定蛋白质的水平以及筛选和分析相互作用的蛋白质系统。用于此类蛋白质检测和测量平台的材料应符合特定的规格,包括易于制造,生物学稳定性,化学功能,成本效益和便携性。聚合物可以满足许多这些要求,并且通常被视为各种生物检测平台中的选择材料。因此,为开发新的宏观和纳米长度尺度的聚合物以及将现有的聚合物材料用于蛋白质测量已经做出了巨大的研究努力。在这篇综述文章中,概述了蛋白质检测的常规技术和替代技术,同时着重于在不同的蛋白质传感技术中使用各种聚合材料。在许多可用的检测机制中,本文全面讨论了最常用的方法,例如光学,电化学,电学,质量敏感和磁学方法。总结了每种蛋白质检测方法开发的聚合物的所需特性。在每种蛋白质检测类别中都检查了与聚合材料应用相关的当前挑战。还确定了蛋白质定量和定性检测面临的困难。从定量和定性测量的角度,还讨论了开发和评估用于改进蛋白质检测的纳米级聚合物系统的最新工作。最后,考虑了该领域进一步发展的未来研究方向。

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