Liu Songqing, Deng Xin, Li Zheng, Zhou Wenjing, Wang Gang, Zhan Jiasui, Hu Binhong
College of Chemistry and Life Sciences, Chengdu Normal University, Chengdu, China.
Sichuan Provincial Key Laboratory for Development and Utilization of Characteristic Horticultural Biological Resources, Chengdu Normal University, Chengdu, China.
Front Vet Sci. 2023 Jul 26;10:1219729. doi: 10.3389/fvets.2023.1219729. eCollection 2023.
Cadmium (Cd) is a toxic element that can negatively affect both humans and animals. It enters the human and animal bodies through the respiratory and digestive tracts, following which it tends to accumulate in different organs, thereby seriously affecting human and animal health, as well as hampering social and economic development. Cd exposure can alter the composition of intestinal microbiota. In addition, it can damage the peripheral organs by causing the translocation of intestinal microbiota. However, the relationship between translocation-induced changes in the composition of microbiome in the blood and metabolic changes remains unclear. In the present study, we investigated the effects of Cd exposure on microbiota and serum metabolism in rats by omics analysis. The results demonstrated that Cd exposure disrupted the balance between the blood and intestinal flora in Sprague-Dawley (SD) rats, with a significant increase in gut microbiota (, ) and blood microbiome (, ). However, Cd exposure caused the translocation of and from the gut into the blood. In addition, Cd exposure was associated with the up-regulation of serum indoxyl sulfate, phenyl sulfate, and p-cresol sulfate; down-regulation of δ-tocopherol and L-glutamine; and changes in blood microbiome and metabolites. In conclusion, we identified novel metabolic biomarkers for Cd toxicity, which will also expand our understanding of the role of blood microbiome in Cd-induced injury.
镉(Cd)是一种有毒元素,会对人类和动物产生负面影响。它通过呼吸道和消化道进入人体和动物体内,随后往往会在不同器官中蓄积,从而严重影响人类和动物健康,并阻碍社会和经济发展。镉暴露会改变肠道微生物群的组成。此外,它会通过引起肠道微生物群的易位来损害外周器官。然而,血液中微生物群组成的易位诱导变化与代谢变化之间的关系仍不清楚。在本研究中,我们通过组学分析研究了镉暴露对大鼠微生物群和血清代谢的影响。结果表明,镉暴露破坏了Sprague-Dawley(SD)大鼠血液和肠道菌群之间的平衡,肠道微生物群(,)和血液微生物群(,)显著增加。然而,镉暴露导致和从肠道易位到血液中。此外,镉暴露与血清硫酸吲哚酚、硫酸苯酯和硫酸对甲酚的上调;δ-生育酚和L-谷氨酰胺的下调;以及血液微生物群和代谢物的变化有关。总之,我们确定了镉毒性的新型代谢生物标志物,这也将扩展我们对血液微生物群在镉诱导损伤中的作用的理解。