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Alterations in glucose homeostasis in a murine model of Chagas disease
Fnu Nagajyothi1, Regina Kuliawat, Christine M Kusminski
1Division of Parasitology and Tropical Medicine, Department of Pathology, Albert Einstein College of Medicine, Bronx, New York 10461, USA.
Insights
Chagas disease from Trypanosoma cruzi infection causes pancreatic damage and hypoglycemia by impairing beta-cell insulin secretion and hepatic gluconeogenesis. This study reveals a complex link between infection, cardiac issues, and glucose metabolism disruption.
Area of Science:
- Infectious Diseases
- Endocrinology
- Metabolic Disorders
Background:
- Chagas disease, caused by Trypanosoma cruzi, is a significant cause of morbidity and mortality, often linked to cardiac dysfunction.
- While cardiac effects are prominent, T. cruzi infection also induces inflammation and cell damage in various organs.
Purpose of the Study:
- To investigate the impact of T. cruzi infection on pancreatic function and glucose homeostasis.
- To elucidate the mechanisms underlying T. cruzi-induced hypoglycemia.
Main Methods:
- Infection of mice with T. cruzi (Brazil strain).
- Assessment of pancreatic islet architecture, beta-cell function, and hormone levels (insulin, glucagon).
- Evaluation of hepatic gluconeogenesis using pyruvate tolerance tests and glucose-6-phosphatase mRNA expression.
Main Results:
- T. cruzi infection led to pancreatic inflammation, beta-cell parasitism, and disrupted islet architecture.
- Infected mice exhibited hypoglycemia, reduced insulin levels, and impaired insulin secretion.
- Defective hepatic gluconeogenesis, indicated by reduced glucose-6-phosphatase mRNA and impaired glucose production, contributed to hypoglycemia.
Conclusions:
- T. cruzi infection disrupts glucose homeostasis through multi-tissue effects, including pancreatic beta-cell dysfunction and impaired hepatic gluconeogenesis.
- The study highlights a complex relationship between Chagas disease pathogenesis and host metabolic regulation.
Abstract:
Chagas disease, caused by Trypanosoma cruzi, is an important cause of morbidity and mortality primarily resulting from cardiac dysfunction, although T. cruzi infection results in inflammation and cell destruction in many organs. We found that T. cruzi (Brazil strain) infection of mice results in pancreatic inflammation and parasitism within pancreatic β-cells with apparent sparing of α cells and leads to the disruption of pancreatic islet architecture, β-cell dysfunction, and surprisingly, hypoglycemia. Blood glucose and insulin levels were reduced in infected mice during acute infection and insulin levels remained low into the chronic phase. In response to the hypoglycemia, glucagon levels 30 days postinfection were elevated, indicating normal α-cell function. Administration of L-arginine and a β-adrenergic receptor agonist (CL316, 243, respectively) resulted in a diminished insulin response during the acute and chronic phases. Insulin granules were docked, but the lack of insulin secretion suggested an inability of granules to fuse at the plasma membrane of pancreatic β-cells. In the liver, there was a concomitant reduced expression of glucose-6-phosphatase mRNA and glucose production from pyruvate (pyruvate tolerance test), demonstrating defective hepatic gluconeogenesis as a cause for the T. cruzi-induced hypoglycemia, despite reduced insulin, but elevated glucagon levels. The data establishes a complex, multi-tissue relationship between T. cruzi infection, Chagas disease, and host glucose homeostasis.
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