Roman Erika, Ploj Karolina, Gustafsson Lisa, Meyerson Bengt J, Nylander Ingrid
Department of Pharmaceutical Biosciences, Division of Pharmacology, Uppsala University, P.O. Box 591, SE-751 24 Uppsala, Sweden.
Neuropeptides. 2006 Jun;40(3):195-206. doi: 10.1016/j.npep.2006.01.004. Epub 2006 Mar 15.
The estrous cycle, with its various hormonal conditions, may provide us with the means of understanding how endocrine states relate to opioid mechanisms. There has been increasing experimental support for interaction between sex steroids and opioid peptides in the central nervous system. Here, we describe fluctuations in endogenous brain immunoreactive (ir) peptide levels during various phases of the estrous cycle in the female Sprague-Dawley rat. Ir levels of dynorphin A, dynorphin B, Leu-enkephalin-Arg(6), Met-enkephalin-Arg(6)Phe(7) and nociceptin/orphanin FQ were measured in the pituitary gland and in 10 areas of the brain during the diestrus, proestrus and estrus phase. In several areas of the brain, basal levels of endogenous opioid peptides showed variation during the course of the estrous cycle. Significant differences were found between the diestrus state and the proestrus and/or estrus conditions, particularly in the nucleus accumbens, caudate putamen and the substantia nigra. The ir levels of the endogenous peptide nociceptin/orphanin FQ became altered in only one of the areas measured, indicating less variance during the estrous cycle. Correlation analyses revealed that significant associations between dynorphin A or dynorphin B and Leu-enkephalin-Arg(6) were found more often during estrus than during the diestrus and proestrus conditions. The ratio between the ir levels of Leu-enkephalin-Arg(6), a cleavage product of the enzymatic conversion of dynorphin peptides into shorter peptides in vivo, and dynorphin peptides was calculated. The significantly lower ratio between Leu-enkephalin-Arg(6) and dynorphin B in diestrus than in proestrus and estrus also indicates cyclic fluctuations in the enzymatic cleavage of dynorphin. These findings are discussed in relation to the possible role of interactions between sex steroids and opioid peptide mechanisms during the normal estrous cycle.
发情周期及其各种激素状态,可能为我们提供理解内分泌状态与阿片类机制之间关系的方法。越来越多的实验支持性类固醇与阿片肽在中枢神经系统中的相互作用。在此,我们描述了雌性斯普拉-道利大鼠发情周期各阶段内源性脑免疫反应性(ir)肽水平的波动情况。在动情间期、动情前期和动情期,测量了垂体以及脑的10个区域中强啡肽A、强啡肽B、亮氨酸脑啡肽-Arg(6)、甲硫氨酸脑啡肽-Arg(6)Phe(7)和孤啡肽/痛敏肽的ir水平。在脑的几个区域中,内源性阿片肽的基础水平在发情周期过程中呈现出变化。在动情间期状态与动情前期和/或动情期条件之间发现了显著差异,特别是在伏隔核、尾状壳核和黑质中。内源性肽孤啡肽/痛敏肽的ir水平仅在一个测量区域发生了改变,表明在发情周期中变化较小。相关性分析显示,与动情间期和动情前期相比,强啡肽A或强啡肽B与亮氨酸脑啡肽-Arg(6)之间的显著关联在动情期更为常见。计算了亮氨酸脑啡肽-Arg(6)(强啡肽肽段在体内酶促转化为较短肽段的裂解产物)与强啡肽肽段的ir水平之比。动情间期亮氨酸脑啡肽-Arg(6)与强啡肽B的比率显著低于动情前期和动情期,这也表明强啡肽的酶促裂解存在周期性波动。结合正常发情周期中性类固醇与阿片肽机制之间相互作用的可能作用对这些发现进行了讨论。