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Updated: Sep 24, 2025

Flow Cytometric Analysis of Multiple Mitochondrial Parameters in Human Induced Pluripotent Stem Cells and Their Neural and Glial Derivatives
Published on: November 8, 2021
Extracellular Flux Analysis of Mitochondrial Function in Pluripotent Stem Cells
Enkhtuul Tsogtbaatar1, Katherine Minter-Dykhouse1, Alicia Saarinen1
1Stem Cell and Regenerative Metabolism Laboratory, Departments of Cardiovascular Medicine, Biochemistry and Molecular Biology, and Center for Regenerative Medicine, Mayo Clinic, Scottsdale, AZ, USA.
Abstract:
Mitochondrial function and energy metabolism are increasingly recognized not only as regulators of pluripotent stem cell function and fate, but also as critical targets in disease pathogenesis and aging. Therefore across the downstream applications of pluripotent stem cells, including development and disease modeling, drug screening, and cell-based therapies, it is crucial to be able to measure mitochondrial function and metabolism in a high-throughput, real-time and label-free manner. Here we describe the application of Seahorse extracellular flux analysis to measure mitochondrial function in pluripotent stem cells and their derivatives. Specifically, we highlight two assays, the Mitochondrial Stress Test, which quantifies overall mitochondrial function including basal, maximal and ATP-couple oxygen consumption rates, and the Electron Transport Chain Complex Specific assay, that quantifies function of individual complexes within the electron transport chain.
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