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Difference between revisions of "Safiulina 2006 Toxicol Sci"

From Bioblast
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|enzymes=Complex I
|enzymes=Complex I
|topics=Respiration; OXPHOS; ETS Capacity
|topics=Respiration; OXPHOS; ETS Capacity
|additional=Environmental Physiology; Toxicology, Pharmacology; Biotechnology
|additional=Pharmacology; Biotechnology, Ecophysiology; Toxciology
|discipline=Mitochondrial Physiology, Biomedicine
|discipline=Mitochondrial Physiology, Biomedicine
}}
}}

Revision as of 16:12, 17 November 2011

Publications in the MiPMap
Safiulina D, Peet N, Seppet E, Zharkovsky A, Kaasik A (2006) Dehydroepiandrosterone inhibits complex I of the mitochondrial respiratory chain and is neurotoxic in vitro and in vivo at high concentrations. Toxicol. Sci. 93: 348-356.

Β» PMID: 16849397

Safiulina D, Peet N, Seppet E, Zharkovsky A, Kaasik A (2006) Toxicol. Sci.

Abstract: Dehydroepiandrosterone (DHEA) is widely used as a food supplement and considered to be relatively safe. In animal studies, however, additions of high concentrations of DHEA to the diet have led to hepatotoxicity as well as liver mitochondrial dysfunction. This study was therefore designed to find out whether DHEA is able to inhibit the respiratory activity also in neuronal mitochondria and to reveal whether this leads to functional disturbance in the brain. Using different mitochondrial substrates, we show here that DHEA suppresses the mitochondrial respiration in permeabilized neurons (half maximal inhibitory concentration 13ΞΌM) by inhibiting complex I of the mitochondrial electron transport chain. Treatment with DHEA was associated with increased glucose expenditure in intact cultures and led to neuronal death. The latter was most prominent in hypoglycemic conditions. Mice fed with pellet containing 0.6% DHEA for 3 months showed a significant neuronal loss in the cerebral cortex and hippocampus, a slightly decreased dopamine/dihydroxyphenylacetic acid ratio, as well as motor impairment. The main conclusion of the present study is that high concentrations of DHEA inhibit complex I of the mitochondrial respiratory chain and are neurotoxic in vitro and in vivo. β€’ Keywords: Mitochondria, Neurosteroids, Neurodegeneration, Neurotoxicity, Complex I of the mitochondrial electron transport chain, Dehydroepiandrosterone

β€’ O2k-Network Lab: EE_Tartu_Seppet EK


Labels:


Organism: Rat  Tissue;cell: Neurons; Brain"Neurons; Brain" is not in the list (Heart, Skeletal muscle, Nervous system, Liver, Kidney, Lung;gill, Islet cell;pancreas;thymus, Endothelial;epithelial;mesothelial cell, Blood cells, Fat, ...) of allowed values for the "Tissue and cell" property. 

Enzyme: Complex I  Regulation: Respiration; OXPHOS; ETS Capacity"Respiration; OXPHOS; ETS Capacity" is not in the list (Aerobic glycolysis, ADP, ATP, ATP production, AMP, Calcium, Coupling efficiency;uncoupling, Cyt c, Flux control, Inhibitor, ...) of allowed values for the "Respiration and regulation" property. 


HRR: Oxygraph-2k 

Pharmacology; Biotechnology, Ecophysiology; Toxciology