Field Mitochondrial Measurement

Field mitochondrial measurement is the quantitative assessment of mitochondrial abundance, structure, or function in organisms and biological samples collected or studied outside a conventional laboratory setting. It typically evaluates indicators such as oxygen consumption, ATP production, membrane potential, or redox activity using portable respirometry, biochemical assays, or fluorescence-based measurements under controlled temperature and sampling conditions. These measurements reveal how mitochondria respond to environmental stress, exercise, nutrition, disease, or changing habitat conditions. In biology and ecological research, field-based data connect cellular energy metabolism with whole-organism performance and improve understanding of physiological adaptation in natural settings.

Field Mitochondrial Measurement - Related Videos

Research

JoVE Journal - Biology

Development of a Mobile Mitochondrial Physiology Laboratory for Measuring Mitochondrial Energetics in the Field

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Cited by 2 •

2021

We designed and constructed a mobile laboratory to measure respiration rates in isolated mitochondria of wild animals captured at field locations. Here, we describe the design and outfitting of a mobile mitochondrial laboratory and the associated laboratory protocols.

The Use of Primary Human Fibroblasts for Monitoring Mitochondrial Phenotypes in the Field of Parkinson's Disease

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Cited by 22 •

2012

Fibroblasts from patients carrying mutations in Parkinson's disease-causing genes represent an easily accessible ex vivo model to study disease-associated phenotypes. Live cell imaging gives the opportunity to study morphological and functional parameters in living cells. Here we describe the preparation of human fibroblasts and subsequent monitoring of mitochondrial phenotypes.

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.

Measurement of Multiple Mitochondrial Parameters in Neurons using Flow Cytometry

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2025

This video demonstrates the labeling of neuronal cells with antibodies for mitochondrial respiratory chain complexes, mitochondrial DNA-associated protein, and mitochondrial outer membrane protein, followed by flow cytometry to quantify their levels.

Ratiometric Biosensors that Measure Mitochondrial Redox State and ATP in Living Yeast Cells

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Cited by 46 •

2013

We describe the use of two ratiometric, genetically encoded biosensors, which are based on GFP, to monitor mitochondrial redox state and ATP levels at subcellular resolution in living yeast cells.

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