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Título

Lipid-oriented live-cell distinction of B and T lymphocytes

AutorKwon, Haw-Young; Kumar Das, Raj; Jung, Gun Tae; Lee, Hong-Guen; Lee, Sun Hyeok; Berry, Stuart N.; Kok Soon Tan, Justin; Park, Solip; Yang, Jae-Seong CSIC ORCID; Park, Soohyun; Baek, Kangkyun; Min Park, Kyeng; Lee, Jae Won; Choi, Yun-Hyuk; Kim, Ki Hean; Kim, Sangho; Kim, Kwang Pyo; Kang, Nam-Young; Kim, Kimoon; Chang, Young-Tae
Fecha de publicación2021
EditorAmerican Chemical Society
CitaciónJournal of the American Chemical Society 143(15): 5836-5844 (2021)
ResumenThe identification of each cell type is essential for understanding multicellular communities. Antibodies set as biomarkers have been the main toolbox for cell-type recognition, and chemical probes are emerging surrogates. Herein we report the first small-molecule probe, CDgB, to discriminate B lymphocytes from T lymphocytes, which was previously impossible without the help of antibodies. Through the study of the origin of cell specificity, we discovered an unexpected novel mechanism of membrane-oriented live-cell distinction. B cells maintain higher flexibility in their cell membrane than T cells and accumulate the lipid-like probe CDgB more preferably. Because B and T cells share common ancestors, we tracked the cell membrane changes of the progenitor cells and disclosed the dynamic reorganization of the membrane properties over the lymphocyte differentiation progress. This study casts an orthogonal strategy for the small-molecule cell identifier and enriches the toolbox for live-cell distinction from complex cell communities.
Versión del editorhttps://doi.org/10.1021/jacs.1c00944
URIhttp://hdl.handle.net/10261/253895
DOI10.1021/jacs.1c00944
E-ISSN1520-5126
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