College of Fisheries, Henan Normal University, Xinxiang 453007, China; Engineering Technology Research Center of Henan Province for Aquatic Animal Cultivation, Henan Normal University, Xinxiang 453007, China.
College of Fisheries, Henan Normal University, Xinxiang 453007, China.
Ecotoxicol Environ Saf. 2024 Apr 15;275:116246. doi: 10.1016/j.ecoenv.2024.116246. Epub 2024 Mar 26.
Cadmium (Cd) pollution is considered a pressing challenge to eco-environment and public health worldwide. Although it has been well-documented that Cd exhibits various adverse effects on aquatic animals, it is still largely unknown whether and how Cd at environmentally relevant concentrations affects iron metabolism. Here, we studied the effects of environmental Cd exposure (5 and 50 μg/L) on iron homeostasis and possible mechanisms in common carp. The data revealed that Cd elevated serum iron, transferrin saturation and iron deposition in livers and spleens, leading to the disruption of systemic iron homeostasis. Mechanistic investigations substantiated that Cd drove hemolysis by compromising the osmotic fragility and inducing defective morphology of erythrocytes. Cd concurrently exacerbated hepatic inflammatory responses, resulting in the activation of IL6-Stat3 signaling and subsequent hepcidin transcription. Notably, Cd elicited ferroptosis through increased iron burden and oxidative stress in livers. Taken together, our findings provide evidence and mechanistic insight that environmental Cd exposure could undermine iron homeostasis via erythrotoxicity and hepatotoxicity. Further investigation and ecological risk assessment of Cd and other pollutants on metabolism-related effects is warranted, especially under the realistic exposure scenarios.
镉(Cd)污染被认为是全球生态环境和公众健康的紧迫挑战。尽管已经有充分的证据表明 Cd 对水生动物具有各种不良影响,但对于环境相关浓度的 Cd 是否以及如何影响铁代谢,人们仍然知之甚少。在这里,我们研究了环境 Cd 暴露(5 和 50μg/L)对鲤鱼铁稳态的影响及其可能的机制。研究数据表明,Cd 会升高血清铁、转铁蛋白饱和度和肝脏和脾脏中的铁沉积,导致系统铁稳态失调。机制研究证实,Cd 通过破坏红细胞的渗透脆性并诱导其形态缺陷来驱动溶血。Cd 还会加剧肝炎症反应,导致 IL6-Stat3 信号通路的激活和随后的铁调素转录。值得注意的是,Cd 通过增加肝脏中的铁负荷和氧化应激引发铁死亡。总之,我们的研究结果提供了证据和机制见解,表明环境 Cd 暴露可能通过红细胞毒性和肝毒性破坏铁稳态。需要进一步研究和生态风险评估 Cd 及其他污染物对代谢相关影响,特别是在现实暴露情况下。