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大鼠下丘脑的个体发育、性别分化以及艾氏剂1254暴露对芳烃受体和芳烃受体核转运蛋白表达的影响。

Ontogenetic development, sexual differentiation, and effects of Aroclor 1254 exposure on expression of the arylhydrocarbon receptor and of the arylhydrocarbon receptor nuclear translocator in the rat hypothalamus.

作者信息

Pravettoni Antonia, Colciago Alessandra, Negri-Cesi Paola, Villa Sara, Celotti Fabio

机构信息

Department of Endocrinology, University of Milano, Via Balzaretti, 9, 20133 Milano, Italy.

出版信息

Reprod Toxicol. 2005 Nov-Dec;20(4):521-30. doi: 10.1016/j.reprotox.2005.03.008.

DOI:10.1016/j.reprotox.2005.03.008
PMID:15869859
Abstract

Interaction of polychlorinated biphenyls (PCBs) with the aryl hydrocarbon receptor (AhR)/nuclear translocator (ARNT) system might interfere with the mechanisms controlling the sexual differentiation of the developing hypothalamus. The aim of this study was to evaluate the presence of AhR/ARNT in brain cells and the developmental profile of their expression in the hypothalamus of male and female rats during the perinatal period. Brain accumulation of the main PCB congeners after prenatal exposure to Aroclor 1254 and its influence on hypothalamic expression of AhR/ARNT was also assessed. The results show that: (a) AhR and ARNT are expressed both in neurons and in glia; (b) AhR expression progressively increases in the developing hypothalamus particularly in males, while ARNT is relatively constant in both sexes; (c) the prenatal administration of Aroclor to dams produces a differential accumulation of PCBs, depending on the chlorine atom number, and stimulates AhR expression only in the male hypothalamus. In conclusion, the developing male hypothalamus might be more sensitive to disrupting potential of PCBs.

摘要

多氯联苯(PCBs)与芳烃受体(AhR)/核转运蛋白(ARNT)系统的相互作用可能会干扰控制发育中的下丘脑性别分化的机制。本研究的目的是评估AhR/ARNT在脑细胞中的存在情况以及围产期雄性和雌性大鼠下丘脑内其表达的发育情况。同时还评估了产前暴露于Aroclor 1254后主要多氯联苯同系物在脑中的蓄积情况及其对下丘脑AhR/ARNT表达的影响。结果表明:(a)AhR和ARNT在神经元和神经胶质细胞中均有表达;(b)在发育中的下丘脑,尤其是雄性下丘脑中,AhR的表达逐渐增加,而ARNT在两性中相对恒定;(c)给母鼠产前施用Aroclor会导致多氯联苯根据氯原子数产生不同的蓄积,并仅刺激雄性下丘脑内AhR的表达。总之,发育中的雄性下丘脑可能对多氯联苯的干扰潜力更为敏感。

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