College of Veterinary Medicine, Northeast Agricultural University, 600 Changjiang Road, Harbin, 150030, PR China.
College of Animal Science and Technology, Northeast Agricultural University, 600 Changjiang Road, Harbin, 150030, PR China.
Environ Pollut. 2021 Apr 1;274:116497. doi: 10.1016/j.envpol.2021.116497. Epub 2021 Jan 13.
Cadmium (Cd) pollution in the environment could cause toxic damage to animals and humans. MAPK pathways could regulate their downstream inflammatory factors, and plays a crucial role in necrosis. Since the swine kidney tissue is an important accumulation site of Cd and target organ of its toxic damage, but the damage form of Cd to swine kidney and the role of MAPK pathways in it are still not clear, we selected six week old weaned piglets as the research object, and fed a diet supplemented CdCl (20 mg/kg) to establish the model of liver injury induced by Cd. The expressions and phosphorylation of MAPK pathways (ERK, JNK, p38), expression levels of inflammatory factors (TNF-α, NF-κB, iNOS, COX-2 and PTGE) and necrosis related genes (MLKL, RIPK1, RIPK3 and FADD) and heat shock proteins (HSPs) were detected by RT-PCR and Western blot. H.E. staining was used to determine the damage of kidney caused by Cd exposure. The results showed that Cd exposure could activate p38 and JNK pathway phosphorylation, rather than ERK 1/2, up regulated the expressions of inflammatory factors, finally induced programmed necrosis (increasing the expressions of MLKL, RIPK1, RIPK3 and FADD) in swine kidney. Our study elucidated the mechanism of Cd-damage to swine kidney and the relationship among MAPK pathways, inflammatory factors and programmed necrosis in swine.
环境中的镉 (Cd) 污染可能对动物和人类造成毒性损害。MAPK 途径可以调节其下游的炎症因子,在细胞坏死中发挥着关键作用。由于猪肾组织是 Cd 的重要蓄积部位和其毒性损伤的靶器官,但 Cd 对猪肾的损伤形式及其在其中的 MAPK 途径的作用尚不清楚,我们选择 6 周龄断奶仔猪作为研究对象,用添加 CdCl(20mg/kg)的饲料喂养来建立 Cd 诱导的肝损伤模型。通过 RT-PCR 和 Western blot 检测 MAPK 途径(ERK、JNK、p38)的表达和磷酸化、炎症因子(TNF-α、NF-κB、iNOS、COX-2 和 PTGE)和坏死相关基因(MLKL、RIPK1、RIPK3 和 FADD)以及热休克蛋白(HSPs)的表达水平。H.E.染色用于确定 Cd 暴露对肾脏造成的损伤。结果表明,Cd 暴露可以激活 p38 和 JNK 途径磷酸化,而不是 ERK 1/2,上调炎症因子的表达,最终在猪肾中诱导程序性坏死(增加 MLKL、RIPK1、RIPK3 和 FADD 的表达)。我们的研究阐明了 Cd 损伤猪肾以及 MAPK 途径、炎症因子和程序性坏死之间关系的机制。