Publications by authors named "S A Fedoreev"

We studied the ability of the polyphenolic complex from Maackia amurensis, the active substance of Maksar, to inhibit the cytopathogenic effect induced by the SARS-CoV-2 and to reduce the concentration of viral RNA in infected Vero E6 cells. Polyphenolic complex showed significant anti-SARS-CoV-2 activity and effectively inhibited viral replication by direct action on viral particles and the early stage of viral infection.

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Hepatoprotective properties of ethanol extract from the roots of Maackia amurensis Ruper et Maxim have been studied on the model of toxic hepatitis induced by carbon tetrachloride damage. It is established that the extract contains daidzein, 7-O-gentobiosides of isoflavonoids genistein, formononetin, pseudobabtige-nin, and 5-O-methylgenistein, and 3-O-gentobiosides of pterocarpans (6aR, 11aR)-maakiain and (6aR, 11aR)-medicarpin. The administration of extract facilitates the restoration of antioxidant protection enzymes activity and reduced glutathione level, decreases the formation of toxic peroxidation products, produces normalizing impact on liver phospholipid pattern, and improves the erythrocyte tolerance to hemolytic agents.

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Comparative investigation of effects of antioxidant agents histochrom and emoxypin on biophysical characteristics of isolated neurons from shell Lymnaea stagnalis under normal conditions and during oxidative stress was performed. Differently directed effects of these compounds on resting potential and transmembrane ion currents of neural cells under normal conditions were detected. Histochrom provides hyperpolarizing and emoxypin--depolarizing effect on neuronal membrane potential.

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Ovariectomy in rats induces the activation of lipid peroxidation processes, reduces total lipid content, and decreases the accumulation of lysophospholipids in erythrocyte membranes. The administration of Maackia amurensis extract (200 mg/kg, p.o.

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The changes developing in the perifocal area of hematoma and perspectives of antioxidant and chelate therapy were studied on the model of experimental hemorrhagic stroke and in clinical conditions. Microcirculatory, ischemic and inflammation disturbances with a certain time sequence were found in the perifocal areas. These changes, along with hypostasis and oxidative stress, form the pathobiochemical cascade of changes in hemorrhagic stroke and are potential therapeutic targets.

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