Myelin: A possible proton capacitor for energy storage during sleep and energy supply during wakefulness

There are several physiological reasons why biological organisms sleep. One key one concerns brain metabolism. In our article we discuss the role of metabolism in myelin, based on the recent discovery that myelin contains mitochondrial components that enable the production of adenosine triphosphate...

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Published inProgress in biophysics and molecular biology Vol. 196; pp. 91 - 101
Main Authors Morelli, Alessandro Maria, Saada, Ann, Scholkmann, Felix
Format Journal Article
LanguageEnglish
Published England Elsevier Ltd 01.06.2025
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Online AccessGet full text
ISSN0079-6107
1873-1732
1873-1732
DOI10.1016/j.pbiomolbio.2025.03.001

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Abstract There are several physiological reasons why biological organisms sleep. One key one concerns brain metabolism. In our article we discuss the role of metabolism in myelin, based on the recent discovery that myelin contains mitochondrial components that enable the production of adenosine triphosphate (ATP) via oxidative phosphorylation (OXPHOS). These mitochondrial components in myelin probably originate from vesiculation of the mitochondrial membranes in form from mitochondrial derived vesicles (MDVs). We hypothesize that myelin acts as a proton capacitor, accumulating energy in the form of protons during sleep and converting it to ATP via OXPHOS during wakefulness. Empirical evidence supporting our hypothesis is discussed, including data on myelin metabolic activity, MDVs, and allometric scaling between white matter volume and sleep duration in mammals. •A new hypothesis as to why living organisms need sleep•Sleep: accumulation of protons in the myelin•Wakefulness: discharge of the myelin proton capacitor and production of ATP
AbstractList There are several physiological reasons why biological organisms sleep. One key one concerns brain metabolism. In our article we discuss the role of metabolism in myelin, based on the recent discovery that myelin contains mitochondrial components that enable the production of adenosine triphosphate (ATP) via oxidative phosphorylation (OXPHOS). These mitochondrial components in myelin probably originate from vesiculation of the mitochondrial membranes in form from mitochondrial derived vesicles (MDVs). We hypothesize that myelin acts as a proton capacitor, accumulating energy in the form of protons during sleep and converting it to ATP via OXPHOS during wakefulness. Empirical evidence supporting our hypothesis is discussed, including data on myelin metabolic activity, MDVs, and allometric scaling between white matter volume and sleep duration in mammals.There are several physiological reasons why biological organisms sleep. One key one concerns brain metabolism. In our article we discuss the role of metabolism in myelin, based on the recent discovery that myelin contains mitochondrial components that enable the production of adenosine triphosphate (ATP) via oxidative phosphorylation (OXPHOS). These mitochondrial components in myelin probably originate from vesiculation of the mitochondrial membranes in form from mitochondrial derived vesicles (MDVs). We hypothesize that myelin acts as a proton capacitor, accumulating energy in the form of protons during sleep and converting it to ATP via OXPHOS during wakefulness. Empirical evidence supporting our hypothesis is discussed, including data on myelin metabolic activity, MDVs, and allometric scaling between white matter volume and sleep duration in mammals.
There are several physiological reasons why biological organisms sleep. One key one concerns brain metabolism. In our article we discuss the role of metabolism in myelin, based on the recent discovery that myelin contains mitochondrial components that enable the production of adenosine triphosphate (ATP) via oxidative phosphorylation (OXPHOS). These mitochondrial components in myelin probably originate from vesiculation of the mitochondrial membranes in form from mitochondrial derived vesicles (MDVs). We hypothesize that myelin acts as a proton capacitor, accumulating energy in the form of protons during sleep and converting it to ATP via OXPHOS during wakefulness. Empirical evidence supporting our hypothesis is discussed, including data on myelin metabolic activity, MDVs, and allometric scaling between white matter volume and sleep duration in mammals. •A new hypothesis as to why living organisms need sleep•Sleep: accumulation of protons in the myelin•Wakefulness: discharge of the myelin proton capacitor and production of ATP
There are several physiological reasons why biological organisms sleep. One key one concerns brain metabolism. In our article we discuss the role of metabolism in myelin, based on the recent discovery that myelin contains mitochondrial components that enable the production of adenosine triphosphate (ATP) via oxidative phosphorylation (OXPHOS). These mitochondrial components in myelin probably originate from vesiculation of the mitochondrial membranes in form from mitochondrial derived vesicles (MDVs). We hypothesize that myelin acts as a proton capacitor, accumulating energy in the form of protons during sleep and converting it to ATP via OXPHOS during wakefulness. Empirical evidence supporting our hypothesis is discussed, including data on myelin metabolic activity, MDVs, and allometric scaling between white matter volume and sleep duration in mammals.
Author Morelli, Alessandro Maria
Saada, Ann
Scholkmann, Felix
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  givenname: Alessandro Maria
  surname: Morelli
  fullname: Morelli, Alessandro Maria
  organization: University of Genoa, Genoa, Italy
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  givenname: Ann
  surname: Saada
  fullname: Saada, Ann
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  organization: Neurophotonics and Biosignal Processing Research Group, Biomedical Optics Research Laboratory, Department of Neonatology, University Hospital Zurich, University of Zurich, Zurich, Switzerland
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Keywords Mitochondrial derived vesicles
Sleep
Proton capacitor
Myelin
Language English
License This is an open access article under the CC BY license.
Copyright © 2025 The Authors. Published by Elsevier Ltd.. All rights reserved.
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Snippet There are several physiological reasons why biological organisms sleep. One key one concerns brain metabolism. In our article we discuss the role of metabolism...
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SubjectTerms Adenosine Triphosphate - metabolism
Animals
Brain - metabolism
Energy Metabolism
Humans
Mitochondria - metabolism
Mitochondrial derived vesicles
Myelin
Myelin Sheath - metabolism
Oxidative Phosphorylation
Proton capacitor
Protons
Sleep
Sleep - physiology
Wakefulness - physiology
Title Myelin: A possible proton capacitor for energy storage during sleep and energy supply during wakefulness
URI https://dx.doi.org/10.1016/j.pbiomolbio.2025.03.001
https://www.ncbi.nlm.nih.gov/pubmed/40157615
https://www.proquest.com/docview/3184018050
Volume 196
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