Zhang Yu-Yao, Yan Zhen-Yu, Qu Mei-Yu, Guo Xin-Jing, Li Guo, Lu Xiao-Long, Liu Yang, Ban Tao, Sun Hong-Li, Qiao Guo-Fen, Li Bai-Yan
Department of Anatomy, Histology, and Embryology, Heilongjiang University of Chinese Medicine, Harbin, China; Key Laboratory of Cardiovascular Medicine Research, Ministry of Education, Harbin Medical University, China.
Department of Pharmacology, Harbin Medical University, Harbin, China.
Neurosci Lett. 2015 Sep 14;604:1-6. doi: 10.1016/j.neulet.2015.07.023. Epub 2015 Jul 26.
Sexual-dimorphic neurocontrol of circulation has been described in baroreflex due largely to the function of myelinated Ah-type baroreceptor neurons (BRNs, 1st-order) in nodose. However, it remains unclear if sex- and afferent-specific neurotransmission could also be observed in the central synapses within nucleus of solitary track (NTS, 2nd-order). According to the principle of no mixed neurotransmission among afferents and differentiation of Ah- and A-types to iberiotoxin (IbTX) observed in nodose, the 2nd-order Ah-type BRNs are highly expected. To test this hypothesis, the excitatory post-synaptic currents (EPSCs) were recorded in identified 2nd-order BRNs before and after IbTX using brain slice and whole-cell patch. These results showed that, in male rats, the dynamics of EPSCs in capsaicin-sensitive C-types were dramatically altered by IbTX, but not in capsaicin-insensitive A-types. Interestingly, near 50% capsaicin-insensitive neurons in females showed similar effects to C-types, suggesting the existence of Ah-types in NTS, which may be the likely reason why the females had lower blood pressure and higher sensitivity to aortic depressor nerve stimulation via KCa1.1-mediated presynaptic glutamate release from Ah-type afferent terminals.
压力反射中已描述了循环的性二态神经控制,这主要归因于结状神经节中有髓鞘的Ah型压力感受器神经元(BRNs,一级)的功能。然而,在孤束核(NTS,二级)内的中枢突触中是否也能观察到性别和传入特异性神经传递仍不清楚。根据传入神经之间无混合神经传递的原则以及在结状神经节中观察到的Ah型和A型对埃博毒素(IbTX)的分化,二级Ah型BRNs是非常有可能存在的。为了验证这一假设,使用脑片和全细胞膜片钳在IbTX处理前后记录已识别的二级BRNs中的兴奋性突触后电流(EPSCs)。这些结果表明,在雄性大鼠中,IbTX显著改变了辣椒素敏感的C型EPSCs的动力学,但对辣椒素不敏感的A型则没有影响。有趣的是,雌性中近50%的辣椒素不敏感神经元表现出与C型相似的效应,这表明NTS中存在Ah型,这可能是雌性血压较低且对通过KCa1.1介导的Ah型传入终末突触前谷氨酸释放的主动脉减压神经刺激敏感性较高的原因。