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Recent Advances in Trace Bioanalysis by Capillary Electrophoresis

机译:毛细管电泳痕量生物分析的最新进展

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Recently, single cell analysis is becoming more and more important to elucidate cellular heterogeneity. Except for nucleic acid that can be amplified by PCR, the required technical level for single cell analysis is extremely high and the appropriate design of sample preparation and a sensitive analytical system is necessary. Capillary/microchip electrophoresis (CE/MCE) can separate biomolecules in nL-scale solution with high resolution, and it is highly compatible with trace samples like a single cell. Coupled with highly sensitive detectors such as laser-induced fluorescence and nano-electrospray ionization–mass spectrometry, zmol level analytes can be detected. For further enhancing sensitivity, online sample preconcentration techniques can be employed. By integrating these high-sensitive techniques, single cell analysis of metabolites, proteins, and lipids have been achieved. This review paper highlights successful research on CE/MCE-based trace bioanalysis in recent 10 years. Firstly, an overview of basic knowledge on CE/MCE including sensitivity enhancement techniques is provided. Applications to trace bioanalysis are then introduced with discussion on current issues and future prospects.
机译:最近,单细胞分析变得越来越重要,可以阐明细胞异质性。除了通过PCR扩增的核酸外,单细胞分析的所需技术水平非常高,并且需要适当的样品制备设计和敏感的分析系统。毛细管/微芯片电泳(CE / MCE)可以以高分辨率分离NL级溶液中的生物分子,并且与单个细胞类似的痕量样品高度相容。耦合与高敏感的探测器,例如激光诱导的荧光和纳米电喷雾电离质谱法,可以检测Zmol水平分析物。为了进一步提高灵敏度,可以采用在线样品预浓缩技术。通过整合这些高敏感的技术,已经实现了代谢物,蛋白质和脂质的单细胞分析。该综述介绍了近10年来对Ce / MCE的痕量生物分析成功研究。首先,提供了包括CE / MCE基本知识的概述,包括灵敏度增强技术。然后讨论当前问题和未来前景进行追踪生物分析的应用。

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