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Published on: June 17, 2025
Gestational Arsenic Exposure Induces Metabolic Dysfunction-Associated Fatty Liver Disease-like Phenotypes in
Qian-Qun Yang1,2, Qing-Hua Qian1,2, Wei-Wei Zhang1,2
1Department of Toxicology, Anhui Medical University, Hefei 230032, China.
Abstract:
Metabolic dysfunction-associated fatty liver disease (MAFLD) refers to hepatic steatosis accompanied by one of the following: type 2 diabetes, obesity, overweight, or metabolic dysfunction. Developmental arsenic (As) exposure is linked to metabolic disorders, but its effects on MAFLD-related phenotypes remain unclear. This study aims to assess the impact of prenatal As exposure on MAFLD-like phenotypes in adulthood offspring. Pregnant mice were given deionized water containing NaAsO2 at concentrations of 0, 1.5, and 15 mg/L throughout their pregnancy. Doses were selected based on environmentally relevant exposure (1.5 mg/L, L-As) and prior evidence of metabolic effects in rodents (15 mg/L, H-As). Gestational H-As exposure increased hepatic triglyceride content and enlarged hepatic lipid droplets in middle-aged offspring. Intraperitoneal glucose tolerance test and insulin tolerance test analyses revealed that prenatal L-As and H-As exposure impaired glucose and insulin tolerance in middle-aged offspring. White fat mass and adipocyte size were elevated in H-As exposed middle-aged offspring. Several metabolism-related hormones, including adiponectin, leptin, and insulin, were elevated, whereas glucagon-like peptide-1, a hormone secreted by the intestines, was reduced in H-As exposed female middle-aged offspring. These results demonstrate that prenatal As-alone promotes MAFLD-like phenotypes in middle-aged offspring, highlighting its role as an early life environmental trigger for metabolic disease.
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