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技术级氯丹在高脂饮食小鼠体内的命运及其作为潜在致肥胖物的作用。

The fate of technical-grade chlordane in mice fed a high-fat diet and its roles as a candidate obesogen.

作者信息

Wang Dezhen, Wang Xinru, Zhang Ping, Wang Yao, Zhang Renke, Yan Jin, Zhou Zhiqiang, Zhu Wentao

机构信息

Beijing Advanced Innovation Center for Food Nutrition and Human Health, Department of Applied Chemistry, China Agricultural University, Yuanmingyuan West Road 2, Beijing 100193, PR China.

Beijing Advanced Innovation Center for Food Nutrition and Human Health, Department of Applied Chemistry, China Agricultural University, Yuanmingyuan West Road 2, Beijing 100193, PR China.

出版信息

Environ Pollut. 2017 Mar;222:532-542. doi: 10.1016/j.envpol.2016.11.028. Epub 2016 Dec 29.

Abstract

Epidemiological studies indicate that exposure to persistent organic pollutants is positively associated with the prevalence of obesity. To delineate the potential role of technical-grade chlordane in obesity development, chlordane metabolism and chlordane-induced metabolic changes were investigated in mice fed high-fat diet (HFD) over a 6-week period. Gas chromatography-electron capture detector analysis showed that HFD induced more accumulation of technical chlordane in the liver, muscle and adipose tissue. The enantioselectivities of oxychlordane in selected tissues were also influenced by HFD. H NMR-based liver metabolome indicated that technical chlordane can enhance the metabolic alterations induced by HFD. Compared with the low-fat diet (LFD) group, no differences were observed in the LFD + chlordane group. However, as many as 16 metabolites were significantly different between the HFD group and HFD + chlordane group. Moreover, compared to the LFD + chlordane group, the abundances of 24 metabolites significantly increased or decreased in the HFD + chlordane group. Twenty metabolites were altered in the HFD group compared to the LFD group. Tryptophan profiling suggested that both chlordane and HFD can disturb tryptophan catabolism. These interactions between technical chlordane and HFD suggest that technical chlordane is a candidate obesogen.

摘要

流行病学研究表明,接触持久性有机污染物与肥胖症的患病率呈正相关。为了阐明工业级氯丹在肥胖症发展中的潜在作用,对喂食高脂饮食(HFD)6周的小鼠的氯丹代谢和氯丹诱导的代谢变化进行了研究。气相色谱-电子捕获检测器分析表明,高脂饮食会导致肝脏、肌肉和脂肪组织中工业级氯丹的积累增加。选定组织中氧氯丹的对映体选择性也受高脂饮食的影响。基于核磁共振氢谱的肝脏代谢组学表明,工业级氯丹可增强高脂饮食诱导的代谢改变。与低脂饮食(LFD)组相比,低脂饮食+氯丹组未观察到差异。然而,高脂饮食组和高脂饮食+氯丹组之间多达16种代谢物存在显著差异。此外,与低脂饮食+氯丹组相比,高脂饮食+氯丹组中24种代谢物的丰度显著增加或减少。与低脂饮食组相比,高脂饮食组中有20种代谢物发生了改变。色氨酸分析表明,氯丹和高脂饮食均可干扰色氨酸分解代谢。工业级氯丹与高脂饮食之间的这些相互作用表明,工业级氯丹是一种潜在的致肥胖物。

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