Mitochondrial Potential Indicator

Mitochondrial potential indicators are fluorescent probes used to measure the electrochemical gradient across the inner mitochondrial membrane, a key marker of mitochondrial function and neuronal health. Lipophilic, positively charged dyes enter mitochondria and accumulate in proportion to the membrane potential; changes in fluorescence intensity, distribution, or emission ratio reveal depolarization or hyperpolarization. In neuroscience, these indicators help assess energy metabolism, synaptic activity, oxidative stress, and cell injury in cultured neurons and brain tissue. They support studies of neurodegenerative disease, excitotoxicity, and responses to drugs or environmental stressors by linking mitochondrial dysfunction with neuronal survival and circuit function.

Mitochondrial Potential Indicator - Related Videos

Research

JoVE EoE - Neuroimaging

Imaging the Mitochondrial Redox State in Primary Neurons Using a Ratiometric Indicator

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2025

Source: Katsalifis, A., et al. Live Imaging of the Mitochondrial Glutathione Redox State in Primary Neurons using a Ratiometric Indicator. J. Vis. Exp. (2021)This video demonstrates the imaging of mitochondrial redox state in primary neurons using a ratiometric fluorescent indicator. By applying two excitation wavelengths under a fluorescence microscope, the fluorescence intensity ratio is measured to assess mitochondrial oxidation. The protocol includes N-methyl-D-aspartate (NMDA) stimulation...

Simultaneous Measurement of Mitochondrial Calcium and Mitochondrial Membrane Potential in Live Cells by Fluorescent Microscopy

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Cited by 29 •

2017

Mitochondria can utilize the electrochemical potential across their inner membrane (ΔΨm) to sequester calcium (Ca2+), allowing them to shape cytosolic Ca2+ signaling within the cell. We describe a method for simultaneously measuring mitochondria Ca2+ uptake and ΔΨm in live cells using fluorescent dyes and confocal microscopy.

Research

JoVE Journal - Neuroscience
Free Sample

Determination of Mitochondrial Membrane Potential and Reactive Oxygen Species in Live Rat Cortical Neurons

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Cited by 230 •

2011

We demonstrate application of the fluorescence indicator, TMRM, in cortical neurons to determine the relative changes in TMRM fluorescence intensity before and after application of a specific stimulus. We also show application of the fluorescence probe H2DCF-DA to assess the relative level of reactive oxygen species in cortical neurons.

Education

JoVE Core - Chemistry

Indicators

0 Views •

2020

Certain organic substances change color in dilute solution when the hydronium ion concentration reaches a particular value. For example, phenolphthalein is a colorless substance in any aqueous solution with a hydronium ion concentration greater than 5.0 × 10−9 M (pH < 8.3). In more basic solutions where the hydronium ion concentration is less than 5.0 × 10−9 M (pH > 8.3), it is red or pink. Substances such as phenolphthalein, which can be used to determine the pH of a solution, are called...

Live Imaging of the Mitochondrial Glutathione Redox State in Primary Neurons using a Ratiometric Indicator

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2021

This article describes a protocol to determine differences in basal redox state and redox responses to acute perturbations in primary hippocampal and cortical neurons using confocal live microscopy. The protocol can be applied to other cell types and microscopes with minimal modifications.

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