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P物质对哺乳动物呼吸网络中起搏器特性的调节作用

Substance P-mediated modulation of pacemaker properties in the mammalian respiratory network.

作者信息

Peña Fernando, Ramirez Jan-Marino

机构信息

Department of Organismal Biology and Anatomy, The University of Chicago, Chicago, Illinois 60637, USA.

出版信息

J Neurosci. 2004 Aug 25;24(34):7549-56. doi: 10.1523/JNEUROSCI.1871-04.2004.

Abstract

Neuromodulators are integral parts of a neuronal network, and unraveling how these substances alter neuronal activity is critical for understanding how networks generate patterned activity and, ultimately, behavior. In this study, we examined the cellular mechanisms underlying the excitatory action of substance P (SP) on the respiratory network isolated in spontaneously active transverse slice preparation of mice. SP produced a slow depolarization in all recorded inspiratory pacemaker and non-pacemaker neurons. Ion exchange experiments and blockers for different ion channels suggest that the slow depolarization is caused by the activation of a low-threshold TTX-insensitive cationic current that carries mostly Na+. The SP-induced slow depolarization increased tonic discharge in non-pacemaker neurons and primarily enhanced the frequency of bursting in Cd2+-insensitive pacemaker neurons. In the Cd2+-sensitive pacemaker neuron, the burst frequency was not significantly affected, whereas burst duration and amplitude were more enhanced than in Cd2+-insensitive pacemaker neurons. In a subset of non-pacemaker neurons that produced NMDA-dependent subthreshold oscillations, SP caused the production of bursts of action potentials. We conclude that the degree of pacemaker activity in the respiratory network is not fixed but dynamically regulated by neuromodulators such as SP. This finding may have clinical implications for Rett syndrome in which SP levels along with other neuromodulators are decreased in the brainstem.

摘要

神经调质是神经网络的重要组成部分,弄清楚这些物质如何改变神经元活动对于理解网络如何产生模式化活动以及最终产生行为至关重要。在本研究中,我们研究了P物质(SP)对从小鼠自发活动的横切片制备中分离出的呼吸网络的兴奋性作用的细胞机制。SP在所有记录的吸气起搏神经元和非起搏神经元中产生缓慢去极化。离子交换实验和针对不同离子通道的阻滞剂表明,缓慢去极化是由一种低阈值、对河豚毒素不敏感的阳离子电流激活引起的,该电流主要携带Na+。SP诱导的缓慢去极化增加了非起搏神经元的紧张性放电,并主要提高了对Cd2+不敏感的起搏神经元的爆发频率。在对Cd2+敏感的起搏神经元中,爆发频率没有受到显著影响,而爆发持续时间和幅度比在对Cd2+不敏感的起搏神经元中增加得更多。在一部分产生NMDA依赖性阈下振荡的非起搏神经元中,SP导致动作电位爆发的产生。我们得出结论,呼吸网络中起搏活动的程度不是固定不变的,而是由诸如SP等神经调质动态调节的。这一发现可能对雷特综合征具有临床意义,在雷特综合征中,脑干中SP水平以及其他神经调质水平会降低。

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