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海马体中的神经血管耦合是通过神经元衍生的一氧化氮的扩散来介导的。

Neurovascular coupling in hippocampus is mediated via diffusion by neuronal-derived nitric oxide.

作者信息

Lourenço Cátia F, Santos Ricardo M, Barbosa Rui M, Cadenas Enrique, Radi Rafael, Laranjinha João

机构信息

Faculty of Pharmacy and Center for Neurosciences and Cell Biology, University of Coimbra, Health Sciences Campus, 3000-548 Coimbra, Portugal.

Department of Pharmacology and Pharmaceutical Sciences, School of Pharmacy, University of Southern California, Los Angeles, CA 90089, USA.

出版信息

Free Radic Biol Med. 2014 Aug;73:421-9. doi: 10.1016/j.freeradbiomed.2014.05.021. Epub 2014 Jun 2.

Abstract

The coupling between neuronal activity and cerebral blood flow (CBF) is essential for normal brain function. The mechanisms behind this neurovascular coupling process remain elusive, mainly because of difficulties in probing dynamically the functional and coordinated interaction between neurons and the vasculature in vivo. Direct and simultaneous measurements of nitric oxide (NO) dynamics and CBF changes in hippocampus in vivo support the notion that during glutamatergic activation nNOS-derived NO induces a time-, space-, and amplitude-coupled increase in the local CBF, later followed by a transient increase in local O2 tension. These events are dependent on the activation of the NMDA-glutamate receptor and nNOS, without a significant contribution of endothelial-derived NO or astrocyte-neuron signaling pathways. Upon diffusion of NO from active neurons, the vascular response encompasses the activation of soluble guanylate cyclase. Hence, in the hippocampus, neurovascular coupling is mediated by nNOS-derived NO via a diffusional connection between active glutamatergic neurons and blood vessels.

摘要

神经元活动与脑血流量(CBF)之间的耦合对于正常脑功能至关重要。这种神经血管耦合过程背后的机制仍然难以捉摸,主要是因为在体内动态探测神经元与血管系统之间的功能和协调相互作用存在困难。对体内海马体中一氧化氮(NO)动态和CBF变化进行直接和同步测量,支持了这样一种观点,即在谷氨酸能激活过程中,神经元型一氧化氮合酶(nNOS)衍生的NO会诱导局部CBF在时间、空间和幅度上耦合增加,随后局部氧张力会短暂升高。这些事件依赖于N-甲基-D-天冬氨酸(NMDA)-谷氨酸受体和nNOS的激活,而内皮衍生的NO或星形胶质细胞-神经元信号通路没有显著作用。当NO从活跃神经元扩散时,血管反应包括可溶性鸟苷酸环化酶的激活。因此,在海马体中,神经血管耦合是由nNOS衍生的NO通过活跃的谷氨酸能神经元与血管之间的扩散连接介导的。

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