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Measurement of mitochondrial membrane potential with the fluorescent dye Tetramethylrhodamine Methyl Ester (TMRM)

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posted on 2019-01-01, 00:00 authored by Sarah Creed, Matthew McKenzieMatthew McKenzie
The mitochondrial membrane potential (Δψm) drives the generation of ATP by mitochondria. Interestingly, Δψm is higher in many cancer cells comparted to healthy noncancerous cell types, providing a unique metabolic marker. This feature has also been exploited for therapeutic use by utilizing drugs that specifically accumulate in the mitochondria of cancer cells with high Δψm. As such, the assessment of Δψm can provide very useful information as to the metabolic state of a cancer cell, as well as its potential for malignancy. In addition, the measurement of Δψm can also be used to test the ability of novel anticancer therapies to disrupt mitochondrial metabolism and cause cell death.Here, we outline two methods for assessing Δψm in cancer cells using confocal microscopy and the potentiometric fluorescent dye tetramethylrhodamine methyl ester (TMRM). In the first protocol, we describe a technique to quantitatively measure Δψm, which can be used to compare Δψm between different cell types. In the second protocol, we describe a technique for assessing changes to Δψm over time, which can be used to determine the effectiveness of different therapeutic compounds or drugs in modulating mitochondrial function.

History

Title of book

Cancer metabolism

Volume

1928

Series

Methods in molecular biology

Chapter number

5

Pagination

69 - 76

Publisher

Humana Press

Place of publication

New York, N.Y.

eISSN

1940-6029

ISBN-13

9781493990276

Language

eng

Publication classification

B1 Book chapter

Copyright notice

2019, Springer Science+Business Media

Extent

25

Editor/Contributor(s)

M Haznadar

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