Abstract
Cadmium (Cd) can easily enter the body through the food chain and threaten health since Cd pollution is prevalent in the environment. Gut microbiota is necessary for the reduction of metal ions. To reduce Cd-induced harmful impacts and Cd accumulation in the body, we investigated the effect of amino acids on gut microbiota and Cd excretion in (fecal Cd) Cd-exposed mice. The screening of 20 amino acids showed that threonine (Thr) effectively increased fecal Cd, and reduced Cd-induced intestinal structural damage. The abundance of Escherichia-Shigella genus and KF843036_g significantly increased after the oral administration of Thr. As the type species of the Escherichia-Shigella genus, Escherichia coli exhibited high similarity to KF843036_g species and significantly decreased Cd-induced gut damage. Cd contents in the liver, kidney, and gut of Cd-exposed mice were also significantly (p < 0.05) decreased after E. coli treatment, while the contents in the feces were increased. The results demonstrated the potential roles that gut E. coli might play in Thr-mediated Cd excretion in Cd-exposed mice. The findings may provide important data for better understanding the molecular biological mechanism of Thr in reducing Cd accumulation in the body.
Funder
National Natural Science Foundation of China
Natural Science Foundation of Guangdong Province
Characteristic Innovation Project of Guangdong Province
Program for Scientific Research Start-up Funds of the Guangdong Ocean University
Subject
Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science
Reference66 articles.
1. Soil contamination with cadmium and potential risk around various mines in China during 2000–2020;Shi;J. Environ. Manag.,2022
2. Serum cadmium positively correlates with inflammatory cytokines in patients with chronic obstructive pulmonary disease;Jiang;Environ. Toxicol.,2021
3. Impact of Cadmium Mediated by Tobacco Use in Musculoskeletal Diseases;Biol. Trace Element Res.,2021
4. Increased serum levels of cadmium are associated with an elevated risk of cardiovascular disease in adults;Ma;Environ. Sci. Pollut. Res.,2021
5. Satarug, S., Đorđević, A.B., Yimthiang, S., Vesey, D.A., and Gobe, G.C. (2022). The NOAEL Equivalent of Environmental Cadmium Exposure Associated with GFR Reduction and Chronic Kidney Disease. Toxics, 10.
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