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微流控单细胞转录组学:迈向多模态和时空组学。

Microfluidic single-cell transcriptomics: moving towards multimodal and spatiotemporal omics.

机构信息

The MOE Key Laboratory of Spectrochemical Analysis & Instrumentation, The Key Laboratory of Chemical Biology of Fujian Province, State Key Laboratory of Physical Chemistry of Solid Surfaces, Department of Chemical Biology, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen 361005, China.

Innovation Laboratory for Sciences and Technologies of Energy Materials of Fujian Province (IKKEM), Xiamen 361005, China.

出版信息

Lab Chip. 2021 Oct 12;21(20):3829-3849. doi: 10.1039/d1lc00607j.

Abstract

Cells are the basic units of life with vast heterogeneity. Single-cell transcriptomics unveils cell-to-cell gene expression variabilities, discovers novel cell types, and uncovers the critical roles of cellular heterogeneity in biological processes. The recent advances in microfluidic technologies have greatly accelerated the development of single-cell transcriptomics with regard to throughput, sensitivity, cost, and automation. In this article, we review state-of-the-art microfluidic single-cell transcriptomics, with a focus on the methodologies. We first summarize six typical microfluidic platforms for isolation and transcriptomic analysis of single cells. Then the on-going trend of microfluidic transcriptomics towards multimodal omics, which integrates transcriptomics with other omics to provide more comprehensive pictures of gene expression networks, is discussed. We also highlight single-cell spatial transcriptomics and single-cell temporal transcriptomics that provide unprecedented spatiotemporal resolution to reveal transcriptomic dynamics in space and time, respectively. The emerging applications of microfluidic single-cell transcriptomics are also discussed. Finally, we discuss the current challenges to be tackled and provide perspectives on the future development of microfluidic single-cell transcriptomics.

摘要

细胞是生命的基本单位,具有巨大的异质性。单细胞转录组学揭示了细胞间基因表达的变异性,发现了新的细胞类型,并揭示了细胞异质性在生物过程中的关键作用。微流控技术的最新进展极大地加速了单细胞转录组学在通量、灵敏度、成本和自动化方面的发展。本文综述了最先进的微流控单细胞转录组学,重点介绍了相关方法学。我们首先总结了用于单细胞分离和转录组分析的六种典型微流控平台。然后讨论了微流控转录组学向多组学发展的趋势,即将转录组学与其他组学相结合,提供更全面的基因表达网络图谱。我们还强调了单细胞空间转录组学和单细胞时间转录组学,它们分别提供了前所未有的时空分辨率,以揭示空间和时间上的转录组动态。文中还讨论了微流控单细胞转录组学的新兴应用。最后,我们讨论了当前需要解决的挑战,并对微流控单细胞转录组学的未来发展提供了展望。

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