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母体传递 DE-71 中的内分泌干扰溴系阻燃剂导致雄性仔鼠糖调节紊乱

Glucoregulatory disruption in male mice offspring induced by maternal transfer of endocrine disrupting brominated flame retardants in DE-71.

机构信息

Department of Molecular, Cell and Systems Biology, University of California Riverside, Riverside, CA, United States.

Neuroscience Graduate Program, University of California Riverside, Riverside, CA, United States.

出版信息

Front Endocrinol (Lausanne). 2023 Mar 17;14:1049708. doi: 10.3389/fendo.2023.1049708. eCollection 2023.

Abstract

INTRODUCTION

Polybrominated diphenyl ethers (PBDEs) are commercially used flame retardants that bioaccumulate in human tissues, including breast milk. PBDEs produce endocrine and metabolic disruption in experimental animals and have been associated with diabetes and metabolic syndrome (MetS) in humans, however, their sex-specific diabetogenic effects are not completely understood. Our past works show glucolipid dysregulation resulting from perinatal exposure to the commercial penta-mixture of PBDEs, DE-71, in C57BL/6 female mice.

METHODS

As a comparison, in the current study, the effects of DE-71 on glucose homeostasis in male offspring was examined. C57BL/6N dams were exposed to DE-71 at 0.1 mg/kg/d (L-DE-71), 0.4 mg/kg/d (H-DE-71), or received corn oil vehicle (VEH/CON) for a total of 10 wks, including gestation and lactation and their male offspring were examined in adulthood.

RESULTS

Compared to VEH/CON, DE-71 exposure produced hypoglycemia after a 11 h fast (H-DE-71). An increased fast duration from 9 to 11 h resulted in lower blood glucose in both DE-71 exposure groups. glucose challenge showed marked glucose intolerance (H-DE-71) and incomplete clearance (L- and H-DE-71). Moreover, L-DE-71-exposed mice showed altered glucose responses to exogenous insulin, including incomplete glucose clearance and/or utilization. In addition, L-DE-71 produced elevated levels of plasma glucagon and the incretin, active glucagon-like peptide-1 (7-36) amide (GLP-1) but no changes were detected in insulin. These alterations, which represent criteria used clinically to diagnose diabetes in humans, were accompanied with reduced hepatic glutamate dehydrogenase enzymatic activity, elevated adrenal epinephrine and decreased thermogenic brown adipose tissue (BAT) mass, indicating involvement of several organ system targets of PBDEs. Liver levels of several endocannabinoid species were not altered.

DISCUSSION

Our findings demonstrate that chronic, low-level exposure to PBDEs in dams can dysregulate glucose homeostasis and glucoregulatory hormones in their male offspring. Previous findings using female siblings show altered glucose homeostasis that aligned with a contrasting diabetogenic phenotype, while their mothers displayed more subtle glucoregulatory alterations, suggesting that developing organisms are more susceptible to DE-71. We summarize the results of the current work, generated in males, considering previous findings in females. Collectively, these findings offer a comprehensive account of differential effects of environmentally relevant PBDEs on glucose homeostasis and glucoregulatory endocrine dysregulation of developmentally exposed male and female mice.

摘要

简介

多溴联苯醚(PBDEs)是一种商业上使用的阻燃剂,会在人体组织中生物累积,包括母乳。PBDEs 在实验动物中会引起内分泌和代谢紊乱,并与人类的糖尿病和代谢综合征(MetS)有关,但它们对糖尿病的性别特异性作用尚不完全清楚。我们过去的工作表明,围产期接触商用五溴二苯醚混合物 DE-71 会导致 C57BL/6 雌性小鼠的糖脂代谢紊乱。

方法

作为对比,在目前的研究中,我们研究了 DE-71 对雄性后代葡萄糖稳态的影响。C57BL/6N 母鼠以 0.1mg/kg/d(L-DE-71)、0.4mg/kg/d(H-DE-71)或玉米油载体(VEH/CON)进行暴露,共 10 周,包括妊娠期和哺乳期,其雄性后代在成年期进行检查。

结果

与 VEH/CON 相比,DE-71 暴露会导致禁食 11 小时后的低血糖(H-DE-71)。禁食时间从 9 小时延长至 11 小时,导致两组 DE-71 暴露组的血糖水平更低。葡萄糖刺激试验显示出明显的葡萄糖耐量受损(H-DE-71)和不完全清除(L-和 H-DE-71)。此外,L-DE-71 暴露的小鼠对外源胰岛素的葡萄糖反应发生改变,包括葡萄糖清除和/或利用不完全。此外,L-DE-71 导致血浆胰高血糖素和肠促胰岛素活性胰高血糖素样肽-1(7-36)酰胺(GLP-1)水平升高,但胰岛素水平没有变化。这些改变是临床上用于诊断人类糖尿病的标准,同时伴有肝谷氨酸脱氢酶酶活性降低、肾上腺去甲肾上腺素升高和棕色脂肪组织(BAT)质量减少,表明多溴联苯醚的多个器官系统靶点受到影响。几种内源性大麻素的肝水平没有改变。

讨论

我们的研究结果表明,母体慢性、低水平暴露于 PBDEs 会使雄性后代的葡萄糖稳态和糖调节激素失调。先前使用雌性同窝仔的研究结果显示葡萄糖稳态发生改变,与相反的糖尿病表型一致,而其母亲表现出更微妙的糖调节改变,表明发育中的生物体对 DE-71 更敏感。我们总结了当前工作在雄性中产生的结果,同时考虑了雌性中的先前发现。总的来说,这些研究结果提供了一个全面的概述,说明了环境相关 PBDEs 对雄性和雌性发育中暴露的小鼠葡萄糖稳态和糖调节内分泌紊乱的不同影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b56/10063979/6e195674b9a5/fendo-14-1049708-g001.jpg

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