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猫心脏房室传导和左心室收缩性的中枢控制:疑核中迷走神经节前神经元与神经肽Y免疫反应性神经末梢的突触相互作用。

Central control of atrio-ventricular conduction and left ventricular contractility in the cat heart: Synaptic interactions of vagal preganglionic neurons in the nucleus ambiguus with neuropeptide Y-immunoreactive nerve terminals.

作者信息

Blinder Karen J, Moore Constance T, Johnson Tannis A, John Massari V

机构信息

Department of Anatomy, Howard University College of Medicine, 520 W St., NW, Washington, DC 20059, USA.

出版信息

Auton Neurosci. 2007 Jan 30;131(1-2):57-64. doi: 10.1016/j.autneu.2006.07.003. Epub 2006 Sep 1.

Abstract

In the cat, vagal postganglionic controls of heart rate, atrio-ventricular (AV) conduction and left ventricular contractility are mediated by three separate intrinsic cardiac ganglia, the sinoatrial (SA), AV and cranioventricular (CV) ganglia, respectively. The vagal preganglionic neurons (VPNs) that project to these ganglia are located in the ventrolateral nucleus ambiguus (NA-VL). We have previously shown that the VPNs projecting to the SA, AV and CV ganglia are distinct from one another. We have also demonstrated that neuropeptide Y-immunoreactive (NPY-IR) axon terminals synapse upon VPNs projecting to the SA ganglion. In the present study, we test the hypothesis that those VPNs projecting to the AV ganglion (negative dromotropic VPNs) and those projecting to the CV ganglion (negative inotropic VPNs) are innervated by NPY-IR terminals in NA-VL. A retrograde tracer was injected into the AV or CV ganglion of the cat, and the brains subsequently processed for visualization of tracer and the immunocytochemical visualization of NPY by dual labeling electron-microscopic methods. We observed that 11+/-5% of all axodendritic synapses and 8+/-6% of all axosomatic synapses upon negative inotropic VPNs were NPY-IR. Furthermore, 19+/-14% of all axodendritic synapses upon negative dromotropic VPNs were NPY-IR. A few NPY-IR axosomatic synapses upon negative dromotropic neurons were also observed. NPY-IR terminals in NA-VL occasionally formed axosomatic synapses with NPY-IR neurons and axoaxonic synapses with unlabeled terminals. These results suggest that central NPY afferents to the NA-VL modulate the vagal preganglionic control of AV conduction and left ventricular contractility.

摘要

在猫中,心率、房室(AV)传导和左心室收缩力的迷走神经节后控制分别由三个独立的心脏固有神经节介导,即窦房(SA)、房室和颅心室(CV)神经节。投射到这些神经节的迷走神经节前神经元(VPNs)位于腹外侧疑核(NA-VL)。我们之前已经表明,投射到SA、AV和CV神经节的VPNs彼此不同。我们还证明,神经肽Y免疫反应性(NPY-IR)轴突终末与投射到SA神经节的VPNs形成突触。在本研究中,我们检验了这样一个假设,即那些投射到AV神经节的VPNs(负性变传导性VPNs)和那些投射到CV神经节的VPNs(负性变力性VPNs)在NA-VL中接受NPY-IR终末的支配。将逆行示踪剂注入猫的AV或CV神经节,随后对大脑进行处理,以便通过双重标记电子显微镜方法对示踪剂进行可视化以及对NPY进行免疫细胞化学可视化。我们观察到,在负性变力性VPNs上,所有轴突-树突突触的11±5%和所有轴突-胞体突触的8±6%是NPY-IR。此外,在负性变传导性VPNs上,所有轴突-树突突触的19±14%是NPY-IR。在负性变传导性神经元上也观察到少数NPY-IR轴突-胞体突触。NA-VL中的NPY-IR终末偶尔与NPY-IR神经元形成轴突-胞体突触,并与未标记的终末形成轴突-轴突突触。这些结果表明,向NA-VL的中枢NPY传入纤维调节迷走神经节前对AV传导和左心室收缩力的控制。

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