Literature DB >> 11270481

Melatonin, mitochondria, and cellular bioenergetics.

D Acuña-Castroviejo1, M Martín, M Macías, G Escames, J León, H Khaldy, R J Reiter.   

Abstract

Aerobic cells use oxygen for the production of 90-95% of the total amount of ATP that they use. This amounts to about 40 kg ATP/day in an adult human. The synthesis of ATP via the mitochondrial respiratory chain is the result of electron transport across the electron transport chain coupled to oxidative phosphorylation. Although ideally all the oxygen should be reduced to water by a four-electron reduction reaction driven by the cytochrome oxidase, under normal conditions a small percentage of oxygen may be reduced by one, two, or three electrons only, yielding superoxide anion, hydrogen peroxide, and the hydroxyl radical, respectively. The main radical produced by mitochondria is superoxide anion and the intramitochondrial antioxidant systems should scavenge this radical to avoid oxidative damage, which leads to impaired ATP production. During aging and some neurodegenerative diseases, oxidatively damaged mitochondria are unable to maintain the energy demands of the cell leading to an increased production of free radicals. Both processes, i.e., defective ATP production and increased oxygen radicals, may induce mitochondrial-dependent apoptotic cell death. Melatonin has been reported to exert neuroprotective effects in several experimental and clinical situations involving neurotoxicity and/or excitotoxicity. Additionally, in a series of pathologies in which high production of free radicals is the primary cause of the disease, melatonin is also protective. A common feature in these diseases is the existence of mitochondrial damage due to oxidative stress. The discoveries of new actions of melatonin in mitochondria support a novel mechanism, which explains some of the protective effects of the indoleamine on cell survival.

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Year:  2001        PMID: 11270481     DOI: 10.1034/j.1600-079x.2001.300201.x

Source DB:  PubMed          Journal:  J Pineal Res        ISSN: 0742-3098            Impact factor:   13.007


  61 in total

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Review 3.  Melatonin and nitric oxide: two required antagonists for mitochondrial homeostasis.

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Review 4.  Melatonin, mitochondria, and the skin.

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Review 5.  Mitochondrial DNA and inflammatory diseases.

Authors:  Germaine Escames; Luis Carlos López; José Antonio García; Laura García-Corzo; Francisco Ortiz; Darío Acuña-Castroviejo
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6.  Effects of intracoronary melatonin on ischemia-reperfusion injury in ST-elevation myocardial infarction.

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7.  Melatonin protects lung mitochondria from aging.

Authors:  Darío Acuña-Castroviejo; Miguel Carretero; Carolina Doerrier; Luis C López; Laura García-Corzo; Jesús A Tresguerres; Germaine Escames
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8.  A protective effect of melatonin on intestinal permeability is induced by diclofenac via regulation of mitochondrial function in mice.

Authors:  Qiao Mei; Lei Diao; Jian-ming Xu; Xiao-chang Liu; Juan Jin
Journal:  Acta Pharmacol Sin       Date:  2011-03-28       Impact factor: 6.150

Review 9.  Melatonin as a mitochondria-targeted antioxidant: one of evolution's best ideas.

Authors:  Russel J Reiter; Sergio Rosales-Corral; Dun Xian Tan; Mei Jie Jou; Annia Galano; Bing Xu
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Review 10.  Extrapineal melatonin: sources, regulation, and potential functions.

Authors:  Darío Acuña-Castroviejo; Germaine Escames; Carmen Venegas; María E Díaz-Casado; Elena Lima-Cabello; Luis C López; Sergio Rosales-Corral; Dun-Xian Tan; Russel J Reiter
Journal:  Cell Mol Life Sci       Date:  2014-02-20       Impact factor: 9.261

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