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Updated: Jan 22, 2026

Evaluation of Hepatic Glucose Production in a Polycystic Ovary Syndrome Mouse Model
Published on: March 5, 2022
Tributyltin exposure disturbs hepatic glucose metabolism in male mice
Jing Xu1, Kunlin Ou1, Chuqiao Chen1
1State Key Laboratory of Cellular Stress Biology, School of Life Sciences, Xiamen University, Xiamen, People's Republic of China.
Abstract:
Some previous studies showed that organotin compounds induced diabetes in animal models. The underlying mechanisms should be further revealed. In this study, male KM mice were exposed to tributyltin (TBT) at 0.5, 5 and 50 μg/kg once every three days for 45 days. The TBT-treated mice exhibited an elevation of fasting blood glucose level and glucose intolerance. The fasting serum insulin levels were increased and reached a significant difference in the 50 μg/kg group; the glucagon levels were significantly decreased in all the treatments. Pancreatic β-cell mass was significantly decreased in all the treatments; α-cell mass showed a significant decrease in the 5 and 50 ug/kg groups. The transcription of pancreatic insulin gene (Ins2) showed an up-regulation and reached a significant difference in the 5 and 50 μg/kg groups, which would be responsible for the increased serum insulin levels. The transcription of glucagon gene (Gcg) in the pancreas was significantly down-regulated in the 5 and 50 ug/kg groups. The protein expression of hepatic glucagon receptor was down-regulated, while the expression of glucose-6-phosphatase and phosphoenolpyruvate carboxykinase was up-regulated accompanied by increased hepatic glycogen content. These results indicated that hepatic gluconeogenesis was enhanced during insulin resistance stage caused by TBT exposure, which would exert a potential risk inducing the development of diabetes mellitus.
Insights
Tributyltin (TBT) exposure in mice led to elevated blood glucose and impaired glucose tolerance. TBT also reduced pancreatic islet cell mass and altered gene expression, suggesting a risk for developing diabetes.
Area of Science:
- Toxicology
- Endocrinology
- Metabolic Diseases
Background:
- Organotin compounds, including tributyltin (TBT), have been implicated in inducing diabetes in animal models.
- The precise mechanisms by which organotins affect glucose homeostasis require further elucidation.
Purpose of the Study:
- To investigate the effects of TBT exposure on glucose metabolism and pancreatic islet function in mice.
- To explore the underlying molecular mechanisms contributing to TBT-induced metabolic disturbances.
Main Methods:
- Male KM mice were administered varying doses of TBT (0.5, 5, 50 μg/kg) every three days for 45 days.
- Measurements included fasting blood glucose, glucose tolerance tests, serum insulin and glucagon levels, pancreatic islet cell mass, and gene/protein expression related to glucose metabolism.
Main Results:
- TBT exposure resulted in hyperglycemia, glucose intolerance, and decreased glucagon levels.
- Significant reductions in pancreatic β-cell and α-cell mass were observed.
- TBT altered the transcription of insulin and glucagon genes and affected hepatic gluconeogenic enzyme expression and glycogen content.
Conclusions:
- TBT exposure disrupts pancreatic islet function and alters glucose metabolism, leading to insulin resistance.
- Enhanced hepatic gluconeogenesis contributes to the hyperglycemic state induced by TBT.
- TBT poses a potential risk for the development of diabetes mellitus.
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