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Atrazine Triggers the Extrinsic Apoptosis Pathway in Lymphocytes of the Frog Pelophylax nigromaculata in Vivo

机译:r去津触发体内蛙黑腹蛙淋巴细胞的外源性凋亡途径。

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Atrazine (ATR) is extensively used worldwide as an herbicide, with a global ecological influence. The widespread distribution of herbicides may be one of the possible reasons for the decline in the global amphibian population. The acute toxicity and potential toxicological mechanisms of ATR on the immune system of frogs are not well-understood. In this study, Pelophylax nigromaculata was used as an experimental carrier and exposed to 0, 1, 10, 100, and 1000 mu g/L ATR solutions for 14 days, resulting in a significant decrease in the viability of their lymphocytes. The characteristics of apoptosis, such as DNA damage, percentage of apoptotic cells, DNA laddering, and morphological features, were measured in lymphocytes from the ATR-exposed groups, and the increase in apoptosis observed appears to be the result of the alterated expression of some key proteins in the extrinsic apoptosis pathway. The expression of the key apoptosis proteins Fas, FasL, c-FLIP, caspase-8, Bid, and caspase-3 was significantly modulated in a dose-dependent manner. Moreover, c-FLIP was shown to modulate the Fas-dependent apoptosis of the lymphocytes. In summary, acute ATR exposure damaged the lymphocytes, resulting in their apoptosis via an extrinsic signaling pathway. This study provides novel insights into the immunological and toxicological responses of amphibians exposed to triazine herbicides.
机译:阿特拉津(ATR)在世界范围内广泛用作除草剂,具有全球生态影响。除草剂的广泛分布可能是全球两栖动物数量下降的可能原因之一。 ATR对青蛙免疫系统的急性毒性和潜在的毒理学机制尚不清楚。在这项研究中,黑腹侧耳(Pelophylax nigromaculata)被用作实验载体,并在0、1、10、100和1000μg/ L ATR溶液中暴露14天,导致其淋巴细胞活力显着下降。在ATR暴露组的淋巴细胞中测量了凋亡的特征,例如DNA损伤,凋亡细胞百分数,DNA梯形和形态学特征,观察到的凋亡增加似乎是某些细胞表达改变的结果。外在凋亡途径中的关键蛋白。关键凋亡蛋白Fas,FasL,c-FLIP,caspase-8,Bid和caspase-3的表达以剂量依赖性方式被显着调节。此外,显示c-FLIP可以调节淋巴细胞的Fas依赖性凋亡。总之,急性ATR暴露会损伤淋巴细胞,导致它们通过外部信号传导途径凋亡。这项研究为暴露于三嗪除草剂的两栖动物的免疫学和毒理学反应提供了新的见解。

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