Havern R L, Whisnant C S, Goodman R L
Department of Physiology, West Virginia University Health Sciences Center, North Morgantown 26506.
Biol Reprod. 1991 Mar;44(3):476-82. doi: 10.1095/biolreprod44.3.476.
Norepinephrine (NE) and dopamine (DA) actively inhibit the release of LH in anestrous ewes. This can be detected as an increase in LH pulse frequency following i.v. injection of NE and DA antagonists. The objective of this study was to determine the sites of these inhibitory actions in the ovine hypothalamus by using local administrations of the NE antagonist, phenoxybenzamine (PBZ), or the DA antagonist, pimozide (PIM), into specific hypothalamic areas. Each neurotransmitter antagonist was administered via a chronically implanted steel guide tube into either the preoptic area (POA), retrochiasmatic area (RCh), or the median eminence region (ME). Blood samples were taken every 15 min for 2 h before and 4 h during implantation of these drugs and were analyzed for LH and prolactin by RIA. Control (no treatment) samples were obtained similarly from the same animals on another day. Placement of PBZ into the POA significantly increased LH pulse frequency and mean LH concentrations over control values whereas PIM did not. In contrast, PIM significantly increased LH pulse frequency and mean LH concentrations when placed in the ME or in the RCh, but PBZ did not. No effects of PIM on prolactin concentrations were detected. These results suggest that an NE neural system operates in the POA and that a DA system acts in the medial basal hypothalamus (RCh or ME) to suppress GnRH pulse frequency in the ovary-intact anestrous ewe.
去甲肾上腺素(NE)和多巴胺(DA)可有效抑制处于乏情期母羊促黄体生成素(LH)的释放。静脉注射NE和DA拮抗剂后,LH脉冲频率增加,这一现象可被检测到。本研究的目的是通过向绵羊下丘脑特定区域局部注射NE拮抗剂酚苄明(PBZ)或DA拮抗剂匹莫齐特(PIM),来确定这些抑制作用的位点。每种神经递质拮抗剂都通过一根长期植入的钢质导管注入视前区(POA)、视交叉后区(RCh)或正中隆起区(ME)。在植入这些药物前2小时和植入期间4小时,每隔15分钟采集一次血样,并用放射免疫分析法(RIA)分析LH和催乳素。对照组(未治疗)样本在另一天从同一动物身上以类似方式获得。将PBZ注入POA后,LH脉冲频率和LH平均浓度显著高于对照值,而PIM则没有这种效果。相反,当PIM注入ME或RCh时,LH脉冲频率和LH平均浓度显著增加,但PBZ没有这种效果。未检测到PIM对催乳素浓度有影响。这些结果表明,在POA中存在一个NE神经系统,而在中基底部下丘脑(RCh或ME)中存在一个DA系统,它们可抑制完整卵巢的乏情期母羊促性腺激素释放激素(GnRH)的脉冲频率。