| Literature DB >> 35654978 |
Jina Ko1, Martin Wilkovitsch2, Juhyun Oh1, Rainer H Kohler1, Evangelia Bolli1,3, Mikael J Pittet1,3,4,5, Claudio Vinegoni1, David B Sykes6,7, Hannes Mikula2, Ralph Weissleder8,9, Jonathan C T Carlson10,11.
Abstract
Cells in complex organisms undergo frequent functional changes, but few methods allow comprehensive longitudinal profiling of living cells. Here we introduce scission-accelerated fluorophore exchange (SAFE), a method for multiplexed temporospatial imaging of living cells with immunofluorescence. SAFE uses a rapid bioorthogonal click chemistry to remove immunofluorescent signals from the surface of labeled cells, cycling the nanomolar-concentration reagents in seconds and enabling multiple rounds of staining of the same samples. It is non-toxic and functional in both dispersed cells and intact living tissues. We demonstrate multiparameter (n ≥ 14), non-disruptive imaging of murine peripheral blood mononuclear and bone marrow cells to profile cellular differentiation. We also show longitudinal multiplexed imaging of bone marrow progenitor cells as they develop into neutrophils over 6 days and real-time multiplexed cycling of living mouse hepatic tissues. We anticipate that SAFE will find broad utility for investigating physiologic dynamics in living systems.Entities:
Year: 2022 PMID: 35654978 DOI: 10.1038/s41587-022-01339-6
Source DB: PubMed Journal: Nat Biotechnol ISSN: 1087-0156 Impact factor: 68.164