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近年来单细胞“组学”的毛细管电泳-质谱联用技术的新进展和新视角。

Recent Advances and New Perspectives in Capillary Electrophoresis-Mass Spectrometry for Single Cell "Omics".

机构信息

Department of Chemistry, University of Wisconsin-Madison, 1101 University Avenue, Madison, WI 53706, USA.

School of Pharmacy, University of Wisconsin-Madison, 777 Highland Avenue, Madison, WI 53705, USA.

出版信息

Molecules. 2018 Dec 22;24(1):42. doi: 10.3390/molecules24010042.

Abstract

Accurate clinical therapeutics rely on understanding the metabolic responses of individual cells. However, the high level of heterogeneity between cells means that simply sampling from large populations of cells is not necessarily a reliable approximation of an individual cell's response. As a result, there have been numerous developments in the field of single-cell analysis to address this lack of knowledge. Many of these developments have focused on the coupling of capillary electrophoresis (CE), a separation technique with low sample consumption and high resolving power, and mass spectrometry (MS), a sensitive detection method for interrogating all ions in a sample in a single analysis. In recent years, there have been many notable advancements at each step of the single-cell CE-MS analysis workflow, including sampling, manipulation, separation, and MS analysis. In each of these areas, the combined improvements in analytical instrumentation and achievements of numerous researchers have served to drive the field forward to new frontiers. Consequently, notable biological discoveries have been made possible by the implementation of these methods. Although there is still room in the field for numerous further advances, researchers have effectively minimized various limitations in detection of analytes, and it is expected that there will be many more developments in the near future.

摘要

准确的临床治疗依赖于对单个细胞代谢反应的理解。然而,细胞之间高度的异质性意味着,仅仅从大量细胞中采样并不一定能可靠地近似于单个细胞的反应。因此,在单细胞分析领域已经有许多发展,旨在解决这一知识空缺。其中许多发展都集中在毛细管电泳(CE)和质谱(MS)的结合上,CE 是一种具有低样品消耗和高分辨率的分离技术,而 MS 是一种灵敏的检测方法,可以在单次分析中检测样品中的所有离子。近年来,单细胞 CE-MS 分析工作流程的每个步骤都取得了许多显著进展,包括采样、操作、分离和 MS 分析。在这些领域中的每一个,分析仪器的综合改进和众多研究人员的成就都推动了该领域向新的前沿发展。因此,这些方法的实施使得一些显著的生物学发现成为可能。尽管该领域还有许多进一步发展的空间,但研究人员已经有效地最小化了分析物检测中的各种限制,预计在不久的将来还会有更多的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87f8/6337428/80ff3af352fd/molecules-24-00042-g001.jpg

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