机构:University of Toronto,Department of Pharmaceutical Sciences
Mahmoud Labib
Shana O. Kelley
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机构:University of Toronto,Department of Pharmaceutical Sciences
Shana O. Kelley
机构:
[1] University of Toronto,Department of Pharmaceutical Sciences
[2] University of Toronto,Department of Chemistry
[3] University of Toronto,Institute for Biomaterials and Biomedical Engineering
[4] University of Toronto,Department of Biochemistry
来源:
Nature Reviews Chemistry
|
2020年
/
4卷
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摘要:
The existence of cellular heterogeneity and its central relevance to biological phenomena provides a strong rationale for a need for analytical methods that enable analysis at the single-cell level. Analysis of the genome and transcriptome is possible at the single-cell level, but the comprehensive interrogation of the proteome with this level of resolution remains challenging. Single-cell protein analysis tools are advancing rapidly, however, and providing insights into collections of proteins with great relevance to cell and disease biology. Here, we review single-cell protein analysis technologies and assess their advantages and limitations. The emerging technologies presented have the potential to reveal new insights into tumour heterogeneity and therapeutic resistance, elucidate mechanisms of immune response and immunotherapy, and accelerate drug discovery.
机构:
Department of Bioengineering, Beijing Technology and Business University
State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical TechnologyDepartment of Bioengineering, Beijing Technology and Business University
Zengnan Wu
Ling Lin
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机构:
Department of Bioengineering, Beijing Technology and Business UniversityDepartment of Bioengineering, Beijing Technology and Business University