Literature DB >> 9928448

Reactive oxygen intermediates, molecular damage, and aging. Relation to melatonin.

R J Reiter1, J M Guerrero, J J Garcia, D Acuña-Castroviejo.   

Abstract

Melatonin, the chief secretory product of the pineal gland, is a direct free radical scavenger and indirect antioxidant. In terms of its scavenging activity, melatonin has been shown to quench the hydroxyl radical, superoxide anion radical, singlet oxygen, peroxyl radical, and the peroxynitrite anion. Additionally, melatonin's antioxidant actions probably derive from its stimulatory effect on superoxide dismutase, glutathione peroxidase, glutathione reductase, and glucose-6-phosphate dehydrogenase and its inhibitory action on nitric oxide synthase. Finally, melatonin acts to stabilize cell membranes, thereby making them more resistant to oxidative attack. Melatonin is devoid of prooxidant actions. In models of oxidative stress, melatonin has been shown to resist lipid peroxidation induced by paraquat, lipopolysaccharide, ischemia-reperfusion, L-cysteine, potassium cyanide, cadmium chloride, glutathione depletion, alloxan, and alcohol ingestion. Likewise, free radical damage to DNA induced by ionizing radiation, the chemical carcinogen safrole, lipopolysaccharide, and kainic acid are inhibited by melatonin. These findings illustrate that melatonin, due to its high lipid solubility and modest aqueous solubility, is able to protect macromolecules in all parts of the cell from oxidative damage. Melatonin also prevents the inhibitory action of ruthenium red at the level of the mitochondria, thereby promoting ATP production. In humans, the total antioxidative capacity of serum is related to melatonin levels. Thus, the reduction in melatonin with age may be a factor in increased oxidative damage in the elderly.

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Year:  1998        PMID: 9928448     DOI: 10.1111/j.1749-6632.1998.tb09920.x

Source DB:  PubMed          Journal:  Ann N Y Acad Sci        ISSN: 0077-8923            Impact factor:   5.691


  24 in total

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4.  The anti-inflammatory effect of erythropoietin and melatonin on renal ischemia reperfusion injury in male rats.

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Review 7.  Mitochondrial function in hypoxic ischemic injury and influence of aging.

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Review 8.  Physiological ischemia/reperfusion phenomena and their relation to endogenous melatonin production: a hypothesis.

Authors:  Dun-Xian Tan; Lucien C Manchester; Rosa M Sainz; Juan C Mayo; Josefa León; Russel J Reiter
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10.  A redox-based mechanism for the contractile and relaxing effects of NO in the guinea-pig gall bladder.

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