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Journal ArticleDOI

Evidence for Altered Structure and Impaired Mitochondrial Electron Transport Function in Selenium Deficiency

P. Rani, +1 more
- 01 Mar 1996 - 
- Vol. 51, Iss: 3, pp 225-234
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TLDR
Electron microscopic observations revealed structural changes such as loss of cristae with proliferative and degenerative changes of the mitochondria in Se deficiency and involvement of Se in maintaining structure and functional efficiency of mitochondria is evident from the present study.
Abstract
Selenium (Se) deficiency in the experimental models, Coturnix coturnix japonica and Corcyra cephalonica, resulted in impaired mitochondrial substrate oxidations and lowered thiol levels. Studies with respiratory inhibitors confirmed reduced mitochondrial electron transport enzyme activities, especially at cytochrome c oxidase (COX), the terminal segment. Enhanced mitochondrial lipid peroxidation in Se deficiency was more pronounced in the heart tissue of the quail compared to other tissues. Glutathione peroxidase (GSH-Px) activity toward H2O2 and cumene hydroperoxide were generally low in the insect muscle tissue and activity toward H2O2 was maximal in the quail heart mitochondria that was not very sensitive to Se status. Lowered COX activity in Se deficiency was more directly correlated with the increased level of lipid peroxidation than with the GSH-Px activity measured, suggestive of Se mediated protective mechanisms independent of GSH-Px. Electron microscopic observations revealed structural changes such as loss of cristae with proliferative and degenerative changes of the mitochondria in Se deficiency. Involvement of Se in maintaining structure and functional efficiency of mitochondria is evident from the present study.

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Chronic heart failure and micronutrients

TL;DR: There is sufficient evidence to support a large-scale trial of dietary micronutrient supplementation in HF, and Carnitine, co-enzyme Q10 and creatine supplementation have resulted in improved exercise capacity in patients with HF in some studies.
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Mineral and vitamin deficiencies can accelerate the mitochondrial decay of aging.

TL;DR: An optimum intake of micronutrients could tune up metabolism and give a marked increase in health, particularly for the poor, elderly, and obese, at little cost.
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Effects of Supplementary Selenium Source on the Blood Parameters in Beef Cows and Their Nursing Calves

TL;DR: Selenium supplementation of gestating beef cows benefited cows and calves by increasing WBSe and GSH-Px and the use of seleno-yeast as a Se supplement compared to sodium selenite increased theWBSe of both cows and their calves without affecting the T4 to T3 conversion or IGF-1 concentrations.

Metabolic lesions in dietary necrotic liver degeneration.

TL;DR: In this article, three distinct dietary factors have been identified as protective against necrotic liver degeneration, namely, cystine (2, lo), vitamin E (ll), and Factor 3 (12).
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Plasma and gastric tissue selenium levels in patients with Helicobacter pylori infection.

TL;DR: Selenium accumulates in gastric tissue when it is needed, as is the case in HP-related antral inflammation, and seems to disappear in the presence of precancerous gastric lesions in the setting of HP-associated gastritis.
References
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Journal ArticleDOI

Identification of type I iodothyronine 5'-deiodinase as a selenoenzyme.

TL;DR: The data indicate that the deiodinase subunit contains one selenium atom per molecule and suggest that a highly reactive selenocysteine is the residue essential for the catalysis of 5'-deiodination.
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Liver Necrosis and Lipid Peroxidation in the Rat as the Result of Paraquat and Diquat Administration: EFFECT OF SELENIUM DEFICIENCY

TL;DR: The findings suggest that paraquat and diquat exert their acute toxicity largely through lipid peroxidation in selenium-deficient rats, and suggests that a seenium-dependent factor in addition to glutathione peroxidase exists that protects against lipidperoxidation.
Journal ArticleDOI

The insulin-like effects of selenate in rat adipocytes.

TL;DR: In the presence of insulin, selenate enhances insulin receptor kinase activity and phosphorylations of insulin-stimulated tyrosyl phosphoproteins, which may provide clues for the elucidation of the role of selenium in animals and the mechanism of insulin action.
Journal ArticleDOI

Selenoenzymes regulate the activity of leukocyte 5-lipoxygenase via the peroxide tone.

TL;DR: Findings indicate that phospholipid hydroperoxide-glutathione peroxidase activity is primarily responsible for the reduction of 5-hydroperoxyeicosate-traenoic acid and therefore governs the actual activity of leukocyte 5-lipoxygenase via regulating the tone of endogenous hydroperoxides.
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