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Mitochondria and xanthine oxidase both generate reactive oxygen species in isolated perfused rat liver after hypoxic injury

Data up to Jan 2025

Published1989
Citations190
References25

Total Citations Per Year

Abstract

References (25)

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Properties of glutathione release observed during reduction of organic hydroperoxide, demethylation of aminopyrine and oxidation of some substances in perfused rat liver, and their implications for the physiological function of catalase

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Beneficial effect of allopurinol in liver ischemia.

1985 • 142 citations

New, simple models to evaluate zone-specific damage due to hypoxia in the perfused rat liver: time course and effect of nutritional state.

1986 • 103 citations

Oxidant stress during reperfusion of ischemic liver: No evidence for a role of xanthine oxidase

1988 • 97 citations

Oxidant stress and hepatic necrosis in rats treated with diquat.

1985 • 94 citations

Hypoxic damage generates reactive oxygen species in isolated perfused rat liver

1988 • 86 citations

Reoxygenation injury in isolated hepatocytes: Cell death precedes conversion of xanthine dehydrogenase to xanthine oxidase

1988 • 48 citations

No increase of biliary permeability in ethinylestradiol-treated rats.

1983 • 45 citations

LEVELS OF PURINE COMPOUNDS IN A PERFUSATE AS A BIOCHEMICAL MARKER OF ISCHEMIC INJURY OF COLD-PRESERVED LIVER1

1987 • 41 citations

Quantitative estimation of transcellular and paracellular pathways of biliary sucrose in isolated perfused rat liver

1987 • 36 citations

Peroxidative injury of the mitochondrial respiratory chain during reperfusion of hypothermic rat liver

1987 • 35 citations

Energy Transduction and Adenine Nucleotides in Mitochondria from Rat Liver after Hypoxic Perfusion

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No increase of biliary permeability in ethinylestradiol-treated rats

1983 • 31 citations

Bile Secretion in Hemoglobin-Free Perfused Rat Liver

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Mitochondria and xanthine oxidase both generate reactive oxygen species in isolated… (1989) – Biochemical and Biophysical Research Communications | Metascience Observatory Explorer