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Neurotoxicology ; 85: 209-221, 2021 07.
Article in English | MEDLINE | ID: mdl-34097938

ABSTRACT

Bisphenol S (BPS), an analogue of the controversial bisphenol A (BPA) that is found in epoxy resins and plastics, is a potential endocrine-disrupting chemical that can mimic endogenous hormone signaling. However, little is known about the behavioral or immunologic effects of BPS. The purpose of this study was to examine the impact of diets in BPS-treated mice in relation to hyperglycemia, development of type 1 diabetes, immunomodulation, and behavioral changes. Adult male and female nonobese diabetic excluded flora (NODEF) mice were exposed to environmentally relevant doses of BPS (VH, 30, or 300 µg/kg BW) and fed either a soy-based diet, a phytoestrogen-free diet, or a Western diet. NODEF male mice fed a soy-based diet exhibited a decreased curiosity/desire to explore, and possibly increased anxiety-like behavior and decreased short-term memory when exposed to BPS (300 µg/kg BW). In addition, these mice had significant increases in non-fasting blood glucose levels along with increased insulin sensitivity, impaired glucose tolerance, resistance to fasting and proinflammation. Although BPS had little effect on the glucose parameters in NODEF male mice fed a Western diet, there were decreases in %CD24+CD5+ and %B220+CD40L-cell populations and increases in distance traveled during the novel object test, suggesting hyperactivity. NODEF females fed a phytoestrogen-free diet exhibited slight decreases in time spent immobile during the tail suspension test in both the 30 and 300 µg/kg BW dose groups along with increases in %CD4+CD8+ and %Mac3+CD45R+ cell populations, signifying increased hyperactivity and anxiety-like behavior. In conclusion, BPS-exposed NODEF mice exhibited sex and diet-related changes in hyperglycemia, behaviors and immune endpoints.


Subject(s)
Diet, Western/adverse effects , Hyperglycemia/metabolism , Hyperkinesis/metabolism , Phenols/toxicity , Soy Foods/adverse effects , Sulfones/toxicity , Animals , Blood Glucose/metabolism , Diet, Western/psychology , Endocrine Disruptors/toxicity , Female , Hyperglycemia/chemically induced , Hyperglycemia/psychology , Hyperkinesis/chemically induced , Hyperkinesis/psychology , Male , Mice , Mice, Inbred NOD , Phytoestrogens/administration & dosage , Phytoestrogens/adverse effects
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