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海马体中神经血管和神经代谢耦合的年龄依赖性损伤。

Age-Dependent Impairment of Neurovascular and Neurometabolic Coupling in the Hippocampus.

作者信息

Lourenço Cátia F, Ledo Ana, Caetano Miguel, Barbosa Rui M, Laranjinha João

机构信息

Center for Neuroscience and Cell Biology, University of Coimbra, Coimbra, Portugal.

Faculty of Pharmacy, University of Coimbra, Coimbra, Portugal.

出版信息

Front Physiol. 2018 Jul 17;9:913. doi: 10.3389/fphys.2018.00913. eCollection 2018.

Abstract

Neurovascular and neurometabolic coupling are critical and complex processes underlying brain function. Perturbations in the regulation of these processes are, likely, early dysfunctional alterations in pathological brain aging and age-related neurodegeneration. Evidences support the role of nitric oxide (•NO) as a key messenger both in neurovascular coupling, by signaling from neurons to blood vessels, and in neurometabolic coupling, by modulating O utilization by mitochondria. In the present study, we investigated the functionality of neurovascular and neurometabolic coupling in connection to •NO signaling and in association to cognitive performance during aging. For this, we performed simultaneous measurements of •NO, O and cerebral blood flow (CBF) in the hippocampus of F344 rats along chronological age in response to glutamatergic activation and in correlation with cognitive performance. Firstly, it is evidenced the temporal sequence of events upon glutamate stimulation of hippocampal , encompassing the local and transitory increase of •NO followed by transitory local changes of CBF and O. Specifically, the transient increase of •NO is followed by an increase of CBF and biphasic changes of the local O. We observed that, although the glutamate-induced •NO dynamics were not significantly affected by aging, the correspondent hemodynamic was progressively diminished accompanying a decline in learning and memory. Noteworthy, in spite of a compromised blood supply, in aged rats we observed an increased O associated to the hemodynamic response, suggestive of a decrease in the global metabolic rate of O. Furthermore, the impairment in the neurovascular coupling observed along aging in F344 rats was mimicked in young rats by promoting an unbalance in redox status toward oxidation via intracellular generation of superoxide radical. This observation strengthens the idea that oxidative stress may have a critical role in the neurovascular uncoupling underlying brain aging and dysfunction. Overall, data supports an impairment of neurovascular response in connection with cognition decline due to oxidative environment-dependent compromised •NO signaling from neurons to vessels during aging.

摘要

神经血管耦合和神经代谢耦合是脑功能的关键且复杂的过程。这些过程调节的扰动很可能是病理性脑老化和年龄相关性神经退行性变中早期功能失调的改变。有证据支持一氧化氮(•NO)作为关键信使在神经血管耦合(通过从神经元向血管发出信号)和神经代谢耦合(通过调节线粒体对氧的利用)中的作用。在本研究中,我们研究了与•NO信号相关以及与衰老过程中的认知表现相关的神经血管和神经代谢耦合的功能。为此,我们在F344大鼠海马中,随着按时间顺序的年龄增长,对•NO、氧和脑血流量(CBF)进行同步测量,以响应谷氨酸能激活并与认知表现相关联。首先,证明了谷氨酸刺激海马后事件的时间顺序,包括•NO的局部和短暂增加,随后是CBF和氧的短暂局部变化。具体而言,•NO的短暂增加之后是CBF的增加和局部氧的双相变化。我们观察到,尽管谷氨酸诱导的•NO动态不受衰老的显著影响,但相应的血流动力学随着学习和记忆的下降而逐渐减弱。值得注意的是,尽管血液供应受损,但在老年大鼠中,我们观察到与血流动力学反应相关的氧增加,提示氧的整体代谢率降低。此外,在年轻大鼠中,通过促进氧化还原状态向氧化的失衡,即通过细胞内产生超氧自由基,模拟了F344大鼠衰老过程中观察到的神经血管耦合受损。这一观察结果强化了氧化应激可能在脑老化和功能障碍潜在的神经血管解耦中起关键作用的观点。总体而言,数据支持在衰老过程中,由于氧化环境依赖的从神经元到血管的•NO信号受损,神经血管反应与认知下降相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8eb4/6056650/50fd0c169f49/fphys-09-00913-g001.jpg

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