College of Veterinary Medicine, South China Agricultural University, Guangzhou 510642, Guangdong, PR China.
College of Animal Science, Tibet Agriculture and Animal Husbandry College, Linzhi 860000, Tibet, PR China.
Sci Total Environ. 2022 Feb 25;809:152188. doi: 10.1016/j.scitotenv.2021.152188. Epub 2021 Dec 4.
As the primary source of electricity for various devices, batteries are important contributors to the overall electronic waste generated; and are widely considered a source of highly ecotoxic pollutants. Material leakage in battery manufacturing has not been completely solved, and the elucidation of the toxic mechanisms of battery wastewater exposure is needed. We demonstrated that battery waste exposure disrupted the intestinal flora and aggravated hepatotoxicity via the gut-liver axis. Under battery waste exposure, colon epithelium suffered physiological damage, and gene and protein expression levels related to gut barrier function (ZO-1, claudin-1, and Occludin) were significantly downregulated. Meanwhile, battery waste reduced the richness and diversity of the flora, causing metabolites produced by intestinal microbes to enter the gut-liver axis. Gut microbial dysbiosis impaired mitochondrial respiratory function in liver tissue cells, and mitophagy, apoptosis, and the disorder of glycolipids and amino acid metabolism were induced in hosts exposed to battery toxins. Altogether, these results provided novel insights into the underlying mechanisms of battery wastewater-related hepatotoxicity induced by gut microbiota via the gut-liver axis, which has public health implications where humans and animals are exposed to industrial toxins generated by uncontained battery disposal.
作为各种设备的主要电力来源,电池是产生的电子废物的主要贡献者;并被广泛认为是高度生态毒性污染物的来源。电池制造中的材料泄漏尚未完全解决,需要阐明电池废水暴露的毒性机制。我们证明,电池废物暴露通过肠-肝轴破坏了肠道菌群并加重了肝毒性。在电池废物暴露下,结肠上皮细胞受到生理损伤,与肠道屏障功能相关的基因和蛋白表达水平(ZO-1、claudin-1 和 Occludin)显著下调。同时,电池废物减少了菌群的丰富度和多样性,导致肠道微生物产生的代谢物进入肠-肝轴。肠道微生物失调损害了肝组织细胞中线粒体的呼吸功能,使暴露于电池毒素的宿主诱导了线粒体自噬、细胞凋亡以及糖脂和氨基酸代谢紊乱。总之,这些结果为通过肠-肝轴由肠道微生物引起的与电池废水相关的肝毒性的潜在机制提供了新的见解,这对人类和动物接触到未受控制的电池处理产生的工业毒素具有公共卫生意义。