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Seiji Marubayashi

Researcher at Hiroshima University

Publications -  93
Citations -  2322

Seiji Marubayashi is an academic researcher from Hiroshima University. The author has contributed to research in topics: Transplantation & Dialysis. The author has an hindex of 22, co-authored 90 publications receiving 2240 citations.

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Journal Article

Role of free radicals in ischemic rat liver cell injury: prevention of damage by alpha-tocopherol administration.

TL;DR: Administration of a free radical scavenger and antioxidant, alpha-tocopherol, is effective in ischemic liver cell injury and is compatible with the assumption that cellular damage caused by hepatic ischemia can be explained by free radical reaction processes during ischemIA and especially reperfusion.
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Overview of regular dialysis treatment in Japan (as of 31 December 2008).

TL;DR: The risk of becoming HCV‐positive was high in patients with low serum creatinine, serum albumin, and serum total cholesterol levels, and/or a low body mass index before beginning dialysis, and the percentage is particularly high in Patients with a period of dialysis of 20 years or longer.
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Adenine nucleotide metabolism during hepatic ischemia and subsequent blood reflow periods and its relation to organ viability.

TL;DR: The ability of the rat liver to synthesize ATP and to maintain adequate energy charge and total adenine nucleotides during restoration of hepatic blood flow following warm ischemia was found to determine tissue viability and survival of the animal.
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Changes in the levels of endogenous coenzyme Q homologs, α-tocopherol, and glutathione in rat liver after hepatic ischemia and reperfusion, and the effect of pretreatment with coenzyme Q10

TL;DR: It is suggested that exogenous coenzyme Q10 functions as an antioxidant with endogenous coen enzyme Q homologs, alpha-tocopherol, and glutathione in lipid peroxidation during reperfusion and compatible with the assumption that cellular damage caused by hepatic ischemia can be explained by free radical reaction processes during ischemIA.