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van Allen, K.

Publications and source records attributed to van Allen, K..

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The aryl hydrocarbon receptor in beta-cells mediates the effects of TCDD on glucose homeostasis in mice

Chronic exposure to persistent organic pollutants (POPs) is associated with increased incidence of type 2 diabetes, hyperglycemia, and poor insulin secretion in humans. Dioxins and dioxin-like compounds are a broad class of POPs that exert cellular toxicity through activation of the aryl hydrocarbon receptor (AhR). We previously showed that a single high-dose injection of 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD, aka dioxin; 20 {micro}g/kg) in vivo reduced fasting and glucose-stimulated plasma insulin levels for up to 6 weeks in male and female mice. TCDD-exposed male mice were also modestly hypoglycemic and had increased insulin sensitivity, whereas TCDD-exposed females were transiently glucose intolerant; whether these effects are driven by AhR activation in {beta}-cells requires investigation. Here we exposed female and male {beta}-cell specific AhR knockout ({beta}AhrKO) mice and littermate Ins1-Cre genotype controls ({beta}AhrWT) to a single high dose of 20 {micro}g/kg TCDD and tracked the mice for 6 weeks. We found that deleting AhR from {beta}-cells increased insulin secretion ex vivo in female mouse islets and promoted modest weight gain in male mice under baseline conditions. Importantly, high-dose TCDD exposure impaired glucose homeostasis and {beta}-cell function in {beta}AhrWT mice, but these phenotypes were largely abolished in TCDD-exposed {beta}AhrKO mice. Our study demonstrates that AhR signaling in {beta}-cell is important for regulating baseline {beta}-cell function in female mice and energy homeostasis in male mice. We also show that {beta}-cell AhR signaling largely mediates the effects of TCDD on glucose homeostasis in both female and male mice, suggesting that the effects of TCDD on {beta}-cell function/health are driving metabolic phenotypes in peripheral tissues.

molecular biology↗