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Microfluidic single-cell multiomics analysis

delete2022-11-30
delete13
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OA
AI
X
Xing Xu
Q
Qiannan Zhang
M
Mingyin Li
S
Shiyan Lin
S
Shanshan Liang
L
Linfeng Cai
H
Huanghuang Zhu
R
Rui Su
C
Chaoyong Yang *
DOI:10.1002/VIW.20220034delete
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Abstract

Abstract

En 中文
Cellular heterogeneity is essential to biological processes, such as embryonic development, cell differentiation, and the progression of disease. Recent years have seen the development of a variety of single-cell multiomics technologies that systemically codetect the genome, epigenome, transcriptome, and proteome for single-cell heterogeneity evaluation comprehensively. Microfluidics has emerged as a significant tool for single-cell multiomics techniques, enabling the analysis of the complex regulatory network associated with genome coding, epigenome regulation, and transcriptome/proteome expression in a single cell with increased detection sensitivity, accuracy, throughput, and integration. A review of state-of-the-art microfluidic single-cell multiomics analysis is presented here. Various microfluidics for isolating single cells are introduced first, highlighting their advantages, disadvantages, and applications in single-cell sequencing. Then, a comprehensive overview of microfluidic single-cell multiomics techniques is provided. In addition, a brief introduction of single-cell multiomics analysis in biological applications and clinical settings will be presented. Finally, we will conclude by discussing the future challenges and prospects of this field.
Keywords:
cellular heterogeneity
microfluidics
multiomics analysis
single cell
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xiamen university
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Citations: 67