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雷尼替丁给药剂量与肝损伤程度的关系:急性甲醇中毒 Wistar 大鼠的研究。

The effect of ranitidine administration in graded dosage to the degree of liver damage: A study on Wistar rats with acute methanol intoxication.

机构信息

Medical School Program, 95450Faculty of Medicine, Diponegoro University, Semarang, Indonesia.

Department of Histology, 95450Faculty of Medicine, Diponegoro University, Semarang, Indonesia.

出版信息

Hum Exp Toxicol. 2021 Mar;40(3):497-503. doi: 10.1177/0960327120954529. Epub 2020 Sep 10.

Abstract

The high incidence of alcoholic poisoning in Indonesia is caused by the use of methanol as a surrogate ingredient of nonconforming alcohol. The product of methanol metabolism is toxic to the liver. Ranitidine has been studied as an antidote to reduce the effect of methanol toxicity. The present study aimed to assess the effect of ranitidine administration on the liver damage of Wistar rats with acute methanol intoxication. This research was an experimental study with randomized and posttest-only control group design. A total of 24 male Wistar rats divided into four groups, each consisting of six Rats. The control group (K0) served as a reference normal value. The control group (K1) was intoxicated with methanol 7 g/kg body weight (b.w.) through rat gavage tube. Treatment groups were intoxicated with methanol and 15 minutes after that, Ranitidine (30 mg/kg b.w. (P1) or 60 mg/kg b.w. (P2)) was given intraperitoneally. Ranitidine administration was proven to protect the liver tissue from damage due to methanol intoxication as was indicated from the histopathological examination. Ranitidine with dose 60 mg/kg b.w. is better in reducing the degree of liver tissue damage in acute methanol intoxication rats.

摘要

印度尼西亚酒精中毒发生率高是由于将甲醇用作不合格酒精的替代成分。甲醇代谢产物对肝脏有毒性。雷尼替丁已被研究用作解毒剂以降低甲醇毒性的影响。本研究旨在评估雷尼替丁给药对急性甲醇中毒 Wistar 大鼠肝脏损伤的影响。这是一项实验性研究,采用随机和仅后测对照设计。共有 24 只雄性 Wistar 大鼠分为四组,每组 6 只大鼠。对照组(K0)作为参考正常值。对照组(K1)通过大鼠灌胃管摄入 7 g/kg 体重(b.w.)的甲醇。处理组摄入甲醇,15 分钟后,腹膜内给予雷尼替丁(30 mg/kg b.w.(P1)或 60 mg/kg b.w.(P2))。组织病理学检查表明,雷尼替丁给药可保护肝脏组织免受甲醇中毒引起的损伤。雷尼替丁 60mg/kg b.w. 的剂量更能降低急性甲醇中毒大鼠肝脏组织损伤的程度。

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