Vitorino Rui, Guedes Sofia, Costa João Pinto da, Kašička Václav
UnIC, Departamento de Cirurgia e Fisiologia, Faculdade de Medicina da Universidade do Porto, 4785-999 Porto, Portugal.
iBiMED, Department of Medical Sciences, University of Aveiro, 00351234 Aveiro, Portugal.
Nanomaterials (Basel). 2021 Apr 26;11(5):1118. doi: 10.3390/nano11051118.
Microfluidics is the advanced microtechnology of fluid manipulation in channels with at least one dimension in the range of 1-100 microns. Microfluidic technology offers a growing number of tools for manipulating small volumes of fluid to control chemical, biological, and physical processes relevant to separation, analysis, and detection. Currently, microfluidic devices play an important role in many biological, chemical, physical, biotechnological and engineering applications. There are numerous ways to fabricate the necessary microchannels and integrate them into microfluidic platforms. In peptidomics and proteomics, microfluidics is often used in combination with mass spectrometric (MS) analysis. This review provides an overview of using microfluidic systems for peptidomics, proteomics and cell analysis. The application of microfluidics in combination with MS detection and other novel techniques to answer clinical questions is also discussed in the context of disease diagnosis and therapy. Recent developments and applications of capillary and microchip (electro)separation methods in proteomic and peptidomic analysis are summarized. The state of the art of microchip platforms for cell sorting and single-cell analysis is also discussed. Advances in detection methods are reported, and new applications in proteomics and peptidomics, quality control of peptide and protein pharmaceuticals, analysis of proteins and peptides in biomatrices and determination of their physicochemical parameters are highlighted.
微流控技术是一种先进的微技术,用于在至少一维尺寸范围为1至100微米的通道中操控流体。微流控技术提供了越来越多的工具,用于操控少量流体,以控制与分离、分析和检测相关的化学、生物和物理过程。目前,微流控设备在许多生物、化学、物理、生物技术和工程应用中发挥着重要作用。制造必要的微通道并将其集成到微流控平台中有多种方法。在肽组学和蛋白质组学中,微流控技术通常与质谱(MS)分析结合使用。本综述概述了将微流控系统用于肽组学、蛋白质组学和细胞分析的情况。还在疾病诊断和治疗的背景下讨论了微流控技术与MS检测及其他新技术结合应用以回答临床问题的情况。总结了毛细管和微芯片(电)分离方法在蛋白质组学和肽组学分析中的最新进展和应用。还讨论了用于细胞分选和单细胞分析的微芯片平台的技术现状。报告了检测方法的进展,并强调了蛋白质组学和肽组学的新应用、肽和蛋白质药物的质量控制、生物基质中蛋白质和肽的分析及其物理化学参数的测定。