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Mitochondrial Staining Allows Robust Elimination of Apoptotic and Damaged Cells during Cell Sorting
Author(s) -
Natasha S. Barteneva,
Eugene D. Ponomarev,
Alla V. Tsytsykova,
Myriam Armant,
Ivan A. Vorobjev
Publication year - 2014
Publication title -
journal of histochemistry and cytochemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.971
H-Index - 124
eISSN - 1551-5044
pISSN - 0022-1554
DOI - 10.1369/0022155413520404
Subject(s) - cell sorting , staining , apoptosis , viability assay , microbiology and biotechnology , cell , chemistry , sorting , biology , cell growth , biochemistry , genetics , computer science , programming language
High-speed fluorescence-activated cell sorting is relevant for a plethora of applications, such as PCR-based techniques, microarrays, cloning, and propagation of selected cell populations. We suggest a simple cell-sorting technique to eliminate early and late apoptotic and necrotic cells, with good signal-to-noise ratio and a high-purity yield. The mitochondrial potential dye, TMRE (tetramethylrhodamine ethyl ester perchlorate), was used to separate viable and non-apoptotic cells from the cell sorting samples. TMRE staining is reversible and does not affect cell proliferation and viability. Sorted TMRE + cells contained a negligible percentage of apoptotic and damaged cells and had a higher proliferative potential as compared with their counterpart cells, sorted on the basis of staining with DNA viability dye. This novel sorting technique using TMRE does not interfere with subsequent functional assays and is a method of choice for the enrichment of functionally active, unbiased cell populations.

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