Zhang Jing, Sun Yuecheng, Song Wentao, Shan Anshan
Institute of Animal Nutrition, Northeast Agricultural University, Harbin 150030, China.
Antioxidants (Basel). 2023 Nov 14;12(11):2000. doi: 10.3390/antiox12112000.
Exposure to phoxim at low levels caused bioaccumulation with neurotoxicity but also induced oxidative stress, tissue damage, and abnormal nutrient metabolism. This study described that vitamin E ameliorates phoxim-induced nephrotoxicity via inhibiting mitochondrial apoptosis. In vivo, 24 healthy piglets were treated with phoxim (0 mg/kg and 500 mg/kg) and vitamin E + phoxim (vitamin E + phoxim: 200 mg/kg + 500 mg/kg). In vitro, PK15 cells were treated with phoxim (0 mg/L and 1 mg/L) and vitamin E + phoxim (phoxim + vitamin E: 1 mg/L + 1 mg/L) for 12 h and 24 h. Our results indicated that accumulation of ROS, oxidative stress, and renal cell injury through stimulation of mitochondrial apoptosis resulted in phoxim-induced nephrotoxicity. Phoxim resulted in swollen mitochondria, blurred internal cristae, renal glomerular atrophy, and renal interstitial fibrosis. Vitamin E alleviated the adverse effects of phoxim by reducing ROS and improving antioxidant capacity in vivo and in vitro. Vitamin E significantly increased SDH in vitro ( < 0.01), while it decreased ROS, Bad, and cyto-c in vitro and SOD and CAT in vivo ( < 0.05). Vitamin E ameliorated phoxim-induced renal histopathologic changes, and mitochondria swelled. In addition, vitamin E regulates phoxim-induced apoptosis by alleviating oxidative damage to the mitochondria.
低水平接触辛硫磷会导致生物蓄积并产生神经毒性,还会引发氧化应激、组织损伤和营养代谢异常。本研究表明,维生素E通过抑制线粒体凋亡改善辛硫磷诱导的肾毒性。在体内实验中,24只健康仔猪分别接受辛硫磷(0毫克/千克和500毫克/千克)以及维生素E + 辛硫磷(维生素E + 辛硫磷:200毫克/千克 + 500毫克/千克)处理。在体外实验中,PK15细胞分别用辛硫磷(0毫克/升和1毫克/升)以及维生素E + 辛硫磷(辛硫磷 + 维生素E:1毫克/升 + 1毫克/升)处理12小时和24小时。我们的结果表明,活性氧的积累、氧化应激以及通过刺激线粒体凋亡导致的肾细胞损伤会引发辛硫磷诱导的肾毒性。辛硫磷导致线粒体肿胀、内部嵴模糊、肾小球萎缩和肾间质纤维化。维生素E通过在体内和体外降低活性氧并提高抗氧化能力,减轻了辛硫磷的不良反应。维生素E在体外显著增加了琥珀酸脱氢酶(<0.01),而在体外降低了活性氧、Bad和细胞色素c,在体内降低了超氧化物歧化酶和过氧化氢酶(<0.05)。维生素E改善了辛硫磷诱导的肾脏组织病理学变化,并且线粒体肿胀。此外,维生素E通过减轻对线粒体的氧化损伤来调节辛硫磷诱导的凋亡。