Cell Viability Multiplexing

Cell viability multiplexing is a method for measuring whether cells remain alive while simultaneously assessing additional cellular responses in the same sample, making it valuable for characterizing cancer biology and treatment effects. It combines compatible fluorescent, luminescent, or colorimetric assays that detect features such as metabolic activity, ATP levels, membrane integrity, or cell death, with signals collected and analyzed together. In cancer research, this approach helps distinguish cytotoxicity from effects on proliferation, apoptosis, or cellular function during drug and combination screening. By generating multiple readouts from one experiment, cell viability multiplexing improves data context, supports dose-response analysis, and can reveal heterogeneous responses that single-endpoint assays may miss.

Cell Viability Multiplexing - Related Videos

Research

JoVE Journal - Biology

Viability Assays for Cells in Culture

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Cited by 39 •

2014

Therapeutic compounds are often first examined in vitro with viability assays. Blind cell counts by a human observer can be highly sensitive to small changes in cell number but do not assess function. Computerized viability assays, as described here, can assess both structure and function in an objective manner.

Counting and Determining the Viability of Cultured Cells

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Cited by 19 •

2008

Determining the number of cells in culture is important in standardization of culture conditions and in performing accurate quantitation experiments. In this video, we demonstrate how cells are counted using a hemacytometer.

Use of a Caspase Multiplexing Assay to Determine Apoptosis in a Hypothalamic Cell Model

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Cited by 20 •

2014

Multiplex assays can provide beneficial information for basic cellular mechanisms and eliminate waste of reagents and unnecessary repetitive experiments. We describe here a multiplex caspase-3/7 activity assay, using fluorescent- and luminescent-based methods, to determine cell viability in an in vitro hypothalamic model following oxidative challenge with palmitic acid.

Highly Multiplexed, Super-resolution Imaging of T Cells Using madSTORM

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Cited by 5 •

2017

We demonstrate a method to image multiple molecules within heterogeneous nano-structures at single molecule accuracy using sequential binding and elution of fluorescently labeled antibodies.

Imaging Cell Viability on Non-transparent Scaffolds — Using the Example of a Novel Knitted Titanium Implant

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Cited by 6 •

2016

Here we present a fluorophore based imaging technique to detect cell viability on a non-transparent titanium scaffold as well as to detect glimpses of the scaffold impurities. This protocol troubleshoots the drawback of imaging cell-cell or cell-metal interactions on non-transparent scaffolds.

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