Tris(1,3-dichloro-2-propyl) phosphate is a metabolism-disrupting chemical in male mice

被引:7
|
作者
Tenlep, Sara Y. Ngo [1 ]
Weaver, Megan [1 ]
Chen, Jianzhong [2 ]
Vsevolozhskaya, Olga [3 ]
Morris, Andrew J. [2 ,4 ]
Rashid, Cetewayo S. [1 ,5 ,6 ]
机构
[1] Univ Kentucky, Dept Pharmacol & Nutr Sci, Lexington, KY USA
[2] Univ Kentucky, Div Cardiovasc Med, Coll Med, Lexington, KY USA
[3] Univ Kentucky, Dept Biostat, Lexington, KY USA
[4] Lexington Vet Affairs Healthcare Syst, Lexington, KY USA
[5] Univ Kentucky, Barnstable Brown Diabet & Obes Ctr, Lexington, KY USA
[6] Univ Kentucky, 900 S Limestone St,566C T Wethington Bldg, Lexington, KY 40536 USA
关键词
Organophosphate flame retardant; TDCPP; Insulin resistance; Glucose tolerance; Body composition; Nuclear receptor; PREGNANE-X-RECEPTOR; ORGANOPHOSPHATE FLAME-RETARDANTS; INSULIN-RESISTANCE; ANDROGENS; EXPOSURE; OBESITY; TARGET; PXR;
D O I
10.1016/j.toxlet.2022.11.021
中图分类号
R99 [毒物学(毒理学)];
学科分类号
100405 ;
摘要
Tris(1,3-dichloro-2-propyl) phosphate (TDCPP) is an organophosphate flame retardant. The primary TDCPP metabolite, bis(1,3-dichloro-2-propyl) phosphate (BDCPP), is detectable in the urine of over 90 % of Americans. Epidemiological studies show sex-specific associations between urinary BDCPP levels and metabolic syndrome, which is an established risk factor for type 2 diabetes, heart disease, and stroke. We used a mouse model to determine whether TDCPP exposure disrupts glucose homeostasis. Six-week old male and female C57BL/6J mice were given ad libitum access to diets containing vehicle (0.1 % DMSO) and TDCPP resulting in the following treatment groups: 0 mg/kg/day, 0.02 mg/kg/day, 1 mg/kg/day, or 100 mg/kg/day. After being on the exper-imental diet for five weeks without interruption, body composition was analyzed, glucose and insulin tolerance tests were performed, and fasting glucose and insulin levels were quantified. TDCPP at 100 mg/kg/day caused male sex-specific adiposity, fasting hyperglycemia, and insulin resistance. TDCPP-induced modulation of nuclear receptor activation was investigated using an in vitro screen to identify potential mechanisms of metabolic disruption. TDCPP activated farnesoid X receptor (FXR) and pregnane X receptor (PXR), and inhibited the androgen receptor (AR). PXR target genes, but not FXR target genes, were upregulated in livers from mice exposed to 100 mg TDCPP/kg/day. Interestingly, PXR target genes were differentially expressed in livers from both males and females. It remains to be determined whether TDCPP-induced metabolic disruption occurs via modulation of nuclear receptor activity. Taken together, these studies build upon the association of TDCPP exposure and metabolic syndrome in humans by identifying sex-specific effects of TDCPP on glucose homeostasis in mice.
引用
收藏
页码:31 / 39
页数:9
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