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Guidelines on experimental methods to assess mitochondrial dysfunction in cellular models of neurodegenerative diseases
Niamh M. C. Connolly, Pierre Theurey, Vera Ádám‐Vizi, Nicolás G. Bazán, Paolo Bernardi, Juan P. Bolaños, Carsten Culmsee, Valina L. Dawson, Mohanish Deshmukh, Michael R. Duchen, Heiko Düßmann, Gary Fiskum, Marı́a F. Galindo, Giles E. Hardingham, J. Marie Hardwick
Cell Death and Differentiation · 2017 · ▲ 210 citations
Abstract
Neurodegenerative diseases are a spectrum of chronic, debilitating disorders characterised by the progressive degeneration and death of neurons. Mitochondrial dysfunction(definition) has been implicated in most neurodegenerative diseases, but in many instances it is unclear whether such dysfunction is a cause or an effect of the underlying pathology, and whether it represents a viable therapeutic target. It is therefore imperative to utilise and optimise cellular models and experimental techniques appropriate to determine the contribution of mitochondrial dysfunction to neurodegenerative disease phenotypes. In this consensus article, we collate details on and discuss pitfalls of existing experimental approaches to assess mitochondrial function in in vitro cellular models of neurodegenerative diseases, including specific protocols for the measurement of oxygen consumption rate in primary neuron cultures, and single-neuron, time-lapse fluorescence imaging of the mitochondrial membrane potential and mitochondrial NAD(P)H. As part of the Cellular Bioenergetics of Neurodegenerative Diseases (CeBioND) consortium ( www.cebiond.org ), we are performing cross-disease analyses to identify common and distinct molecular mechanisms involved in mitochondrial bioenergetic dysfunction in cellular models of Alzheimer's, Parkinson's, and Huntington's diseases. Here we provide detailed guidelines and protocols as standardised across the five collaborating laboratories of the CeBioND consortium, with additional contributions from other experts in the field.
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- 10.1038/s41418-017-0020-4
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- 2026-07-30 MST
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APA
Connolly, N.M.C., Theurey, P., Ádám‐Vizi, V., Bazán, N.G., Bernardi, P., Bolaños, J.P., Culmsee, C., Dawson, V.L., Deshmukh, M., Duchen, M.R., Düßmann, H., Fiskum, G., Galindo, M.F., Hardingham, G.E., Hardwick, J.M., Jekabsons, M.B., Jonas, E.A., Jordán, J., Lipton, S.A., & Manfredi, G. (2017). Guidelines on experimental methods to assess mitochondrial dysfunction in cellular models of neurodegenerative diseases. <em>Cell Death and Differentiation</em>. https://doi.org/10.1038/s41418-017-0020-4
Vancouver
Connolly NMC, Theurey P, Ádám‐Vizi V, Bazán NG, Bernardi P, Bolaños JP, et al. Guidelines on experimental methods to assess mitochondrial dysfunction in cellular models of neurodegenerative diseases. Cell Death and Differentiation. 2017. doi:10.1038/s41418-017-0020-4.
BibTeX
@article{niamh2017Guidel,
title = {Guidelines on experimental methods to assess mitochondrial dysfunction in cellular models of neurodegenerative diseases},
author = {Niamh M. C. Connolly and Pierre Theurey and Vera Ádám‐Vizi and Nicolás G. Bazán and Paolo Bernardi and Juan P. Bolaños and Carsten Culmsee and Valina L. Dawson and Mohanish Deshmukh and Michael R. Duchen and Heiko Düßmann and Gary Fiskum and Marı́a F. Galindo and Giles E. Hardingham and J. Marie Hardwick and Mika B. Jekabsons and Elizabeth A. Jonas and Joaquı́n Jordán and Stuart A. Lipton and Giovanni Manfredi and Mark P. Mattson and BethAnn McLaughlin and Axel Methner and Anne N. Murphy and Michael P. Murphy},
journal = {Cell Death and Differentiation},
year = {2017},
doi = {10.1038/s41418-017-0020-4},
}
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