de Oliveira Cleusa V R, Ciriello John
Department of Physiology and Pharmacology, Faculty of Medicine and Dentistry, Health Sciences Centre, University of Western Ontario, London, Ontario, Canada N6A 5C1.
Brain Res. 2003 Oct 3;986(1-2):148-56. doi: 10.1016/s0006-8993(03)03226-8.
Experiments were done to investigate the effect of chronic estrogen (E; 30 pg/ml plasma) treatment (15-25 days) in the ovariectomized (OVX) female Wistar rat on the cardiovascular responses to hypocretin-1 (hcrt-1) in the nucleus ambiguus (Amb). Microinjections of hcrt-1 (0.5-2.5 pmol) into the external formation of Amb (Ambe) in the urethane anaesthetized, E treated OVX animal or OVX only animal, elicited a dose-related decrease in heart rate (HR). On the other hand, hcrt-1 injections into Ambe did not elicit consistent changes in mean arterial pressure (MAP). The HR response was mediated by vagal excitation as ipsilateral vagotomy abolished the bradycardia response. The bradycardia responses were consistently of greater magnitude and longer duration in the OVX+E animals compared to the OVX only female animals. Finally, it was found that the reflex bradycardia to activation of arterial baroreceptors, as a result of increasing systemic arterial pressure with phenylephrine, was only significantly potentiated in the OVX+E animals. These data suggest that hcrt-1 in the Ambe of the female elicits an increase in vagal cardiomotor neuronal activity to the heart, and that the circulating level of E alters not only the sensitivity of Ambe neurons to hcrt-1 but also the sensitivity of these neurons during activation of baroreceptor afferent inputs.
进行实验以研究慢性雌激素(E;血浆浓度30 pg/ml)处理(15 - 25天)对去卵巢(OVX)雌性Wistar大鼠迷走神经背核(Amb)中对下丘脑泌素-1(hcrt-1)的心血管反应的影响。在乌拉坦麻醉的、经雌激素处理的去卵巢动物或仅去卵巢动物中,向迷走神经背核外侧部(Ambe)微量注射hcrt-1(0.5 - 2.5 pmol),可引起心率(HR)呈剂量相关的下降。另一方面,向Ambe注射hcrt-1并未引起平均动脉压(MAP)的一致变化。HR反应是由迷走神经兴奋介导的,因为同侧迷走神经切断消除了心动过缓反应。与仅去卵巢的雌性动物相比,去卵巢+雌激素动物的心动过缓反应幅度始终更大、持续时间更长。最后,发现用去氧肾上腺素升高全身动脉压从而激活动脉压力感受器所引起的反射性心动过缓,仅在去卵巢+雌激素动物中显著增强。这些数据表明,雌性动物Ambe中的hcrt-1可引起心脏迷走神经运动神经元活动增加,并且雌激素的循环水平不仅改变Ambe神经元对hcrt-1的敏感性,还改变这些神经元在压力感受器传入输入激活期间的敏感性。