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Apoptosis is induced by sub-acute exposure to 3-MCPD and glycidol on Wistar Albino rat brain cells

机译:通过亚急性暴露于Wistar白化大鼠脑细胞的亚急性暴露于3-MCPD和丙糖醇诱导细胞凋亡

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摘要

3-chloropropane-l,2-diol (3-MCPD) and its toxic metabolite glycidol were classified by the International Agency for Research on Cancer (IARC) as belonging to group 2B and 2A for humans. This study aimed to determine the sub-acute toxicity of these agents. Rats were exposed to 3-MCPD at 0.87 and 10 mg/kg/bw and glycidol (2,4 and 37,5 mg/kg/bw) for 90 days. miR-21 gene expression levels significantly decreased in all group's cerebellar tissues compared with control. Exposure to 10 mg/kg/bw 3-MCPD showed significant increases in PTEN in brain as compared to control group. The Akt gen expressions were significantly decreased in 3-MCPD and glycidol groups when compared to control group brains. Additionally, Caspase 3 and AIF immunopositivity significantly increased in 3-MCPD high dose and glycidol high dose groups in cerebellum granular layers compared to control. The results of the present study conclude that 3-MCPD and glycidol can induce apoptosis in rat brain tissue.
机译:3-氯丙丙烷-1,2-二醇(3-MCPD)及其有毒代谢物糖醇素被国际癌症(IARC)研究代理为属于第2B组和人类的2A组。 本研究旨在确定这些药剂的亚急性毒性。 将大鼠暴露于0.87和10mg / kg / bw和缩水甘油(2,4和37,5mg / kg / bw)的3-mcpd 90天。 与对照相比,所有组的小脑组织中MiR-21基因表达水平显着降低。 与对照组相比,暴露于10mg / kg / bw 3-mcpd 3-mcpd显示出PTEN中的PTEN增加。 与对照组大脑相比,在3-MCPD和缩水甘油基组中,AKT Gen表达显着降低。 另外,与对照相比,Caspase 3和AIF免疫阳性在小粒子层中的3-MCPD高剂量和缩水甘油高剂量基团显着增加。 本研究结果得出结论,3-MCPD和糖醇可以诱导大鼠脑组织中的凋亡。

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  • 来源
    《Environmental toxicology and pharmacology》 |2021年第10期|103735.1-103735.6|共6页
  • 作者单位

    Department of Medical Pharmacology Faculty of Medicine University of Kastamonu 37200 Kastamonu Turkey;

    Deparment of Pathology Faculty of Veterinary University of Cumhuriyet 58140 Sivas Turkey;

    Deparment of Pharmaceutical Toxicology Faculty of Pharmacy University of Istanbul 34116 Istanbul Turkey;

    Deparment of Internal Medicine Faculty of Veterinary University of Ataturk 25240 Erzurum Turkey;

    Deparment of Pathology Faculty of Veterinary University of Erciyes 38280 Kayseri Turkey;

    Deparment of Biochemistry Faculty of Pharmacy University of Carol Davila 020956 Bucharest Romania;

    Department of Forensic Sciences and Toxicology Faculty of Medicine University of Crete 71003 Heraklion Greece;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    3-MCPD; Glycidol; miR-21; PTEN-Akt pathway;

    机译:3-MCPD;糖糖;miR-21;PTEN-AKT途径;

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