期刊文献+

Changes of Estrogen in Serum and Estrogen Receptor β in the Relevant Brain Regions Following Mating Behavior of the Male Mandarin Vole Microtus mandarinus 被引量:2

交配行为对雄性棕色田鼠雌激素及雌激素β受体在相关脑区的影响(英文)
下载PDF
导出
摘要 In order to investigate the estrogen and estrogen receptor β changes after mating behavior of male mandarin vole (Microtus mandarinus), the radioimmunoassay (RIA) and immunohistochemistry methods were used to investigate changes of the serum estrogen (E) concentrations, estrogen immunoreactive neurons (E-IRs) and estrogen receptor β immunoreactive neurons (ERβ-IRs) in the relevant brain regions following mating behavior. Fifteen sexually matured male voles were randomly divided into three groups and treated differently: (1) control group: voles were exposed to clean hard-wood shavings (n=5), (2) exposure group: voles were exposed to the soiled bedding for more than 24h on which estrous females had been placed (n=5), and (3) mating group: voles were placed with an estrous female for more than 24h (n=5). The results showed circulating serum E concentrations were significantly higher in the mating group than in the exposure group and the control group, and there were no significant difference between the exposure group and the control group. E-IRs and ERβ-IRs were detected in the following brain regions related to mating behavior: the arcuate nucleus (ARC), bed nucleus of the stria terminalis (BST), lateral septal nucleus (LS), medial amygdaloid nucleus (ME), medial preoptic area (MPO) and ventromedial hypothalamic nucleus (VMH). The results showed that there were significantly more E-IRs in the six brain regions in the mating group than in the control group and the exposure group, and there were no significant difference between the exposure group and the control group except for LS. There was no significant difference in ERβ-IRs in the six brain regions among the three groups, and there were some lighter -stained ERβ-IRs in these brain regions. The results suggested that estrogen affect mating activity of male mandarin voles, but ERβ might not play an important role in mating behavior of male mandarin voles. Instead, it might be through other receptors. 应用行为观察、放射免疫分析和免疫组织化学相结合的方法,研究了雄性棕色田鼠在交配后血清中的雌二醇(E)、与交配行为有关的脑区E免疫阳性细胞数目(E-IRs)、雌激素β受体(ERβ)免疫阳性细胞数目(ERβ-IRs)的变化。将睾丸下降的成年雄性棕色田鼠分成3组:(1)对照组:嗅闻24h新鲜锯木。(2)暴露组:嗅闻24h动情期雌鼠底物。(3)交配组:与动情期雌鼠交配24h。放射免疫检测血清中的E浓度,交配组比暴露组、对照组显著增高,暴露组和对照组无显著差异。通过免疫组化检测与性行为有关的脑区:弓状核(ARC)、终纹床核(BST)、隔外侧核(LS)、杏仁内侧核(ME)、内侧视前区(MPO)、下丘脑腹内侧核(VMH)E-IRs和ERβ-IRs,E-IRs在交配组比对照组和暴露组各区域都显著增多,暴露组比对照组在隔外侧核显著增多外,其他区域无显著差异。ERβ-IRs在这3组之间均无显著差异,而且ERβ免疫阳性细胞颜色浅淡。结果表明:雌激素对雄性棕色田鼠的交配活动起一定的作用,但可能通过其他受体,ERβ在雄性棕色田鼠的交配活动中可能未起重要作用。
出处 《Zoological Research》 CAS CSCD 北大核心 2008年第5期529-536,共8页 动物学研究(英文)
基金 Natural Science Foundation of China (30670273) Natural Science Foundation of Shaanxi (2008C269) Science and Technology Plan Project of Xi'an Bureau of Science and Technology (YF07194) Special Science Research Fund for Xi'an University of Arts and Science (KY200520)~~
关键词 Mandarin voles (Microtus mandarinus): Estrogen Estrogen receptor β RADIOIMMUNOASSAY Mating behavior 棕色田鼠 雌激素 雌激素受体D 放射免疫分析 交配行为
  • 相关文献

参考文献35

  • 1Apostolinas S, Rajendren G, Dobrjansky A, Gibson MJ. 1999. Androgen receptor immunoreactivity in neural regions in normal and hypogonadal male mice:effect of androgens[J]. Brain Res, 817: 19-24.
  • 2Aragona B J, Liu Y, Yu J, Curtis T J, Detwiler J, Insel TR, Wang ZX.2006. Nucleus accumbens dopamine differentially mediates formation and maintenance of monogamous pair bonds[J]. Nature Neurosci, 9: 133-139.
  • 3Bao XM, Su SY. 1991. Stereotaxic Atlas of the Rat Brain[M]. Beijing: People Medical Press, 23-49.
  • 4Brackett NL, Edwards DA. 1984. Medial preoptic connections with the midbrain tegmentum are essential for male sexual behavior[J]. Physiol Behav, 32( 1): 79-84.
  • 5Cameron N, Erskine MS. 2003. c-FOS expression in the forebrain after mating in the female rat is altered by adrenalectomy[J]. Neuroendocrinology, 77(5): 305-13.
  • 6Clancy AN, Zumpe D, Michael PP. 2000. Estrogen in the medial preoptic area of male rats facilitates copulatory behavior[J]. Horm Behav, 38(2): 86-93.
  • 7Cooper TT, Clancy AN, Karom M, Moore TO, Albers HE. 2000. Conversion of testosterone to estradiol may not be necessary for the expression of mating behavior in male Syrian hamsters (Mesocricetus auratus)[J]. Horm Behav, 37(3): 237-45.
  • 8Cushing BS, Razzoli M, Murphy AZ, Epperson PM, Le WW, Hoffman GE. 2004. Intraspecific variation in estrogen receptor alpha and the expression of male sociosexual behavior in two populations of prairie voles[J]. Brain Res, 1016(2): 247-54.
  • 9DeJong TR, Pattij T, Veening JG, Dederen PJ, Waldinger MD, Cools AR, Olivier B. 2005. Citalopram combined with way 100635 inhibits ejaculation and ejaculation-related Fos immunoreactivity[J]. Eur J Pharmacol, 509(1): 49-59.
  • 10Fugger HN, C-Foster TC, Gustafsson JA, Rissman EF. 2000. Novel effects of estradiol and estrogen receptor α and β on cognitive function[J]. Brain Res, 883: 258-264.

同被引文献7

引证文献2

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部