Home General Physiology and Biophysics 2022 General Physiology and Biophysics Vol.41, No.1, p. 63–70, 2022

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Quarterly, 80 pp. per issue
Founded: 1982
ISSN  1338-4325 (online)

Published in English

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General Physiology and Biophysics Vol.41, No.1, p. 63–70, 2022

Title: The effects of thiamine pyrophosphate on propofol-induced oxidative liver injury and effect on dysfunction
Author: Leman Acun Delen, Zeliha Korkmaz Dişli, Hakan G. Taş, Ufuk Kuyrukluyildiz, Gulce N. Yazici, Bahadir Süleyman, Mehmet Kuzucu, Cebrail Gürsu, Halis Suleyman

Abstract:

Propofol may cause an increase in reactive oxygen species in the body. In this study, we tested the effect of antioxidant thiamine pyrophosphate (TPP) on propofol-induced liver damage. The eighteen rats were split into three groups: HG, healthy; PP, propofol-treated (50 mg/kg) and PT, treated with propofol (50 mg/kg) and TPP (25 mg/kg). Total glutathione (tGSH), total oxidant (TOS), and total antioxidant (TAS) levels were tested together with aspartate aminotransferase (AST), alanine aminotransferase (ALT), lactate dehydrogenase (LDH) and malondialdehyde (MDA). Histopathological examination of the tissues was performed.

We have found that levels of MDA, TOS, ALT, AST, and LDH were all higher in PP group than in HG and PT groups (p < 0.05). In PP group, the TAS and tGSH levels were statistically substantially lower. The PT for oxidants levels showed a statistically significant reduction. In PT group, the levels of antioxidants were found to be considerably higher. The epitheliums, glands, and vascular structures of the PTs were histologically close to normal. By boosting antioxidants, TPP may help to reduce propofol-induced liver damage.



Keywords: Antioxidants — Liver — Oxidative stress — Propofol — Thiamine pyrophosphate
Published online: 14-Feb-2022
Year: 2022, Volume: 41, Issue: 1 Page From: 63, Page To: 70
doi:10.4149/gpb_2021043


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