首页> 外文期刊>The Journal of toxicological sciences >Estimation of potential risk of allyl alcohol induced liver injury in diabetic patients using type 2 diabetes spontaneously diabetic Torii-Lepr(fa) (SDT fatty) rats
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Estimation of potential risk of allyl alcohol induced liver injury in diabetic patients using type 2 diabetes spontaneously diabetic Torii-Lepr(fa) (SDT fatty) rats

机译:患有2型糖尿病患者糖尿病患者血糖酒精诱导肝损伤的潜在风险的估算自发性糖尿病患者(SDT脂肪)大鼠

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摘要

In order to estimate the potential risk of chemicals including drug in patients with type 2 diabetes mellitus (T2DM), we investigated allyl alcohol induced liver injury using SD rats and Spontaneously Diabetic Torii-Lepr(fa), (SDT fatty) rats as a model for human T2DM. The diabetic state is one of the risk factors for chemically induced liver injury because of lower levels of glutathione for detoxification by conjugation with chemicals and environmental pollutants and their reactive metabolites. Allyl alcohol is metabolized to a highly reactive unsaturated aldehyde, acrolein, which is detoxified by conjugation with glutathione. Therefore, we used allyl alcohol as a model compound. Our investigations showed that SDT fatty rats appropriately mimic the diabetic state in humans. The profiles of glucose metabolism, hepatic function tests and glutathione synthesis in the SDT fatty rats were similar to those in patients with T2DM. Five-week oral dosing with allyl alcohol to the SDT fatty rats revealed that the allyl alcohol induced liver injury was markedly enhanced in the SDT fatty rats when compared with the SD rats and the difference was considered to be due to lower hepatic detoxification of acrolein, the reactive metabolite of allyl alcohol, by depleted hepatic glutathione synthesis. Taking all the results of the present study into consideration, the potential for allyl alcohol to induce liver injury is considered to be higher in diabetic patients than in healthy humans.
机译:为了估算包括2型糖尿病患者(T2DM)的药物的潜在风险(T2DM),我们使用SD大鼠和自发性糖尿病菌菌(FA),(SDT脂肪)大鼠作为模型,研究了烯丙酚诱导的肝损伤对于人类T2DM。糖尿病状态是化学诱导肝损伤的危险因素之一,因为通过与化学品和环境污染物及其活性代谢物缀合而谷胱甘肽水平降低。将烯丙基醇代谢为高反应性的不饱和醛,丙烯醛,通过与谷胱甘肽缀合而被解毒。因此,我们用烯丙基醇作为模型化合物。我们的研究表明,SDT脂肪大鼠适当地模仿人类的糖尿病状态。 SDT脂肪大鼠中葡萄糖代谢,肝功能试验和谷胱甘肽合成的概况与T2DM患者的曲线相似。用烯丙基醇给SDT脂肪大鼠进行五周口服给药揭示了烯丙基酒精诱导的肝损伤在与SD大鼠相比时在SDT脂肪大鼠中显着增强,并且认为差异是由于丙烯醛的较低肝脏排毒。烯丙基醇的反应性代谢物,通过耗尽肝谷胱甘肽合成。考虑本研究的所有结果,糖苷醇含酒精患者诱导肝损伤的可能性被认为是糖尿病患者的含量高于健康的人类。

著录项

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  • 作者单位

    Japan Tobacco Inc Toxicol Res Lab Cent Pharmaceut Res Inst Kanazawa Ku 1-13-2 Fukuura Yokohama;

    Japan Tobacco Inc Toxicol Res Lab Cent Pharmaceut Res Inst Kanazawa Ku 1-13-2 Fukuura Yokohama;

    Japan Tobacco Inc Toxicol Res Lab Cent Pharmaceut Res Inst Kanazawa Ku 1-13-2 Fukuura Yokohama;

    Japan Tobacco Inc Toxicol Res Lab Cent Pharmaceut Res Inst Kanazawa Ku 1-13-2 Fukuura Yokohama;

    Japan Tobacco Inc Toxicol Res Lab Cent Pharmaceut Res Inst Kanazawa Ku 1-13-2 Fukuura Yokohama;

    Japan Tobacco Inc Toxicol Res Lab Cent Pharmaceut Res Inst Kanazawa Ku 1-13-2 Fukuura Yokohama;

    Japan Tobacco Inc Toxicol Res Lab Cent Pharmaceut Res Inst Kanazawa Ku 1-13-2 Fukuura Yokohama;

    Univ Shizuoka Grad Sch Integrated Pharmaceut &

    Nutr Sci Grad Program Environm Hlth Sci Suruga Ku;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药学;
  • 关键词

    SDT fatty rats; Type2 diabetes; Hepatotoxicity; Glutathione; Allyl alcohol;

    机译:SDT脂肪大鼠;Type2糖尿病;肝毒性;谷胱甘肽;allyl酒精;
  • 入库时间 2022-08-20 07:21:23

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