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首页> 外文期刊>Archives of Toxicology >Rat H9c2 cardiac myocytes are sensitive to arsenite due to a modest activation of transcription factor Nrf2
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Rat H9c2 cardiac myocytes are sensitive to arsenite due to a modest activation of transcription factor Nrf2

机译:由于转录因子Nrf2的适度激活,大鼠H9c2心肌细胞对亚砷酸盐敏感

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The mechanism underlying the hepatotoxicity induced by arsenic exposure is well investigated. However, little is known about the detailed mechanisms of arsenic-induced cardiotoxicity or cardiac factors involved in high sensitivity to arsenicals in spite of the fact that arsenic trioxide, which is used to treat acute promyelocytic leukemia, causes cardiotoxicity. Here, we show that rat H9c2(2-1) cardiac myocytes exhibit high sensitivity to inorganic arsenite (As(III)) as compared with rat-derived four cell lines (liver epithelial TRL1215 cells, kidney epithelial NRK-52E cells, PC12 phechromocytoma cells and C6 glioma cells). Furthermore, we found a lower steady-state level of glutathione and glutamyl-cysteine ligase (GCL) in H9c2(2-1) cells compared with TRL1215 cells, resulting in an increase in arsenic accumulation. In addition, we detected that the up-regulation of GCL and multi-drug resistance-associated protein (MRP) caused by As(III) was extremely low in H9c2(2-1) cells compared with TRL1215 cells. It is known that Nrf2, which regulates GCL and MRP expression, plays an important role in the protection of cells from arsenicals. We investigated the participation of Nrf2 in the difference of sensitivity to arsenicals between H9c2(2-1) and TRL1215 cells and found that Nrf2 was clearly activated by As(III) exposure in TRL1215 cells but only poorly activated in H9c2(2-1) cells. Considering these results together, we propose that modest activation of Nrf2 during exposure to As(III) in H9c2(2-1) cardiac myocytes leads to reduced ability to metabolize and excrete arsenic.
机译:充分研究了砷暴露引起的肝毒性的潜在机制。然而,尽管用于治疗急性早幼粒细胞白血病的三氧化二砷会引起心脏毒性,但对砷引起的对心脏高度敏感的心脏毒性或心脏因素的详细机制知之甚少。在这里,我们显示大鼠H9c2(2-1)心肌细胞与源自大鼠的4种细胞系(肝上皮TRL1215细胞,肾上皮NRK-52E细胞,PC12嗜铬细胞瘤)相比对无机亚砷酸盐(As(III))表现出高敏感性细胞和C6胶质瘤细胞)。此外,我们发现H9c2(2-1)细胞中的谷胱甘肽和谷氨酰胺-半胱氨酸连接酶(GCL)的稳态水平低于TRL1215细胞,从而导致砷积累的增加。此外,我们检测到,H9c2(2-1)细胞中As(III)引起的GCL和多药耐药相关蛋白(MRP)的上调与TRL1215细胞相比极低。已知调节GCL和MRP表达的Nrf2在保护细胞免受砷污染方面起着重要作用。我们调查了Nrf2参与H9c2(2-1)和TRL1215细胞对砷的敏感性差异的过程,发现Nrf2在TRL1215细胞中被As(III)暴露明显激活,而在H9c2(2-1)中仅被弱激活。细胞。综合考虑这些结果,我们建议在H9c2(2-1)心肌细胞中暴露于As(III)期间适度激活Nrf2会导致代谢和排泄砷的能力降低。

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