Streamlined duplex live-dead microplate assay for cultured cells.

Exp Eye Res

Department of Ophthalmology, University at Buffalo-State University of New York (SUNY), Buffalo, NY, USA; SUNY Eye Institute, Buffalo, NY, USA; Department of Biochemistry and Neuroscience Program, University at Buffalo- State University of New York (SUNY), Buffalo, NY, USA; Research Service, VA Western New York Healthcare System, Buffalo, NY, USA. Electronic address:

Published: August 2017

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Article Abstract

A duplex fluorescence assay to assess the viability of cells cultured in multi-well plates is described, which can be carried out in the original culture plate using a plate reader, without exchanges of culture or assay medium, or transfer of cells or cell supernatant. The method uses freshly prepared reagents and does not rely on a proprietary, commercially supplied kit. Following experimental treatment, calcein acetoxymethyl ester (CaAM) is added to each well of cultured cells; after 30 min, the fluorescence intensity (emission λ ∼ 530 nm) is measured. The signal is due to formation of calcein, which is produced from CaAM by action of esterase activity found in intact live cells. Since live cells may express plasma membrane multidrug transport proteins, especially of the ABC transporter family, the CaAM incubation is carried out in the presence of an inhibitor of this efflux process, thereby improving the dynamic range of the assay. Next, SYTOX Orange (SO) is added to the culture wells, and, after a 30-min incubation, fluorescence intensity (emission λ ∼ 590 nm) is measured again. SO is excluded from cells that have an intact plasma membrane, but penetrates dead/dying cells and can diffuse into the nucleus, where it binds to and forms a fluorescent complex with DNA. The CaAM already added to the wells causes no interference with the latter fluorescent signal. At the conclusion of the duplex assay, both live and dead cells remain in the culture wells and can be documented by digital imaging to demonstrate correlation of cellular morphology with the assay output. Two examples of the application of this method are provided, using cytotoxic compounds having different mechanisms of action.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5697708PMC
http://dx.doi.org/10.1016/j.exer.2017.05.011DOI Listing

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