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malonic acid/hypoxia

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[Protective effect of malonic acid in hypoxic hypoxia].

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Malonic acid injection causes an increase in the survival of rats with acute hypoxic hypoxia. Endogenic malonic acid is supposed to be of great importance in stimulating tissue resistance to hypoxia.
We have examined the influence of ATP-sensitive potassium (KATP) channel opener pinacidil (0.06 mg/kg) and inhibitor glibenclamide (1 mg/kg) on the changes of energy metabolism in the liver of rats under the stress conditions. The rats were divided in two groups with high and low resistance to

[Role of ATP-sensitive potassium channel activators in liver mitochondrial function in rats with different resistance to hypoxia].

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Effects of ATP-sensitive potassium (KATP) channels opener pinacidil (0.06 mg/kg) and inhibitor glibenclamide (1 mg/kg) in rats with different resistance to hypoxia on indices of ADP-stimulation of mitochondrial respiration by Chance, calcium capacity and processes of lipid peroxidation in liver has

Alteration of oxygen consumption and energy metabolism during repetitive exposure of mice to hypoxia.

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Changes in oxygen consumption, body temperature and energy metabolism were studied while mice were repeatedly exposed to a sealed environment. The average tolerance limits of environmental oxygen level (vol%) and the average oxygen consumption rates (ml/g x min) were exponentially decreased and the

[The antihypoxic action of malonic acid].

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Malonic acid showed a protective action on rats in acute hypoxic hypoxia. The antihypoxic effect of this compound is unassociated with its action on succinate dehydrogenase and may be mediated through the changes in hormonal metabolic regulation.
In experiments on rats with different resistance to hypoxia are investigated processes of mitochondrial respiration, oxidative phosphorylation and calcium capacity in liver under precursor nitric oxide L-arginine (600 mg/kg) and blockator nitric oxide synthase L-NNA (35 mg/kg) injections. We are

Selective vulnerability of the CA1 region of hippocampus to the indirect excitotoxic effects of malonic acid.

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The CA1 region of hippocampus is selectively vulnerable to a variety of insults, including hypoxia-ischemia and Alzheimer's disease, but the basis of this regional susceptibility is poorly understood. We examined the regional hippocampal sensitivity to mitochondrial metabolic disruption induced by

Mitochondrial respiratory chain as a new target for anti-ischemic molecules.

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Vascular diseases like thrombosis, myocardial infarction, cerebral ischemia or chronic venous insufficiency affect a high proportion of the population. They are all associated with more or less pronounced ischemic conditions. We have previously shown that some venotropic drugs display an
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