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解析葡萄糖进入大脑的过程:基于酶的葡萄糖生物传感器获得的新发现。

Parsing glucose entry into the brain: novel findings obtained with enzyme-based glucose biosensors.

作者信息

Kiyatkin Eugene A, Wakabayashi Ken T

机构信息

In-Vivo Electrophysiology Unit, Behavioral Neuroscience Branch, National Institute on Drug Abuse - Intramural Research Program, National Institutes of Health , DHHS, 333 Cassell Drive, Baltimore, Maryland 21224, United States.

出版信息

ACS Chem Neurosci. 2015 Jan 21;6(1):108-16. doi: 10.1021/cn5002304. Epub 2014 Dec 9.

Abstract

Extracellular levels of glucose in brain tissue reflect dynamic balance between its gradient-dependent entry from arterial blood and its use for cellular metabolism. In this work, we present several sets of previously published and unpublished data obtained by using enzyme-based glucose biosensors coupled with constant-potential high-speed amperometry in freely moving rats. First, we consider basic methodological issues related to the reliability of electrochemical measurements of extracellular glucose levels in rats under physiologically relevant conditions. Second, we present data on glucose responses induced in the nucleus accumbens (NAc) by salient environmental stimuli and discuss the relationships between local neuronal activation and rapid glucose entry into brain tissue. Third, by presenting data on changes in NAc glucose induced by intravenous and intragastric glucose delivery, we discuss other mechanisms of glucose entry into the extracellular domain following changes in glucose blood concentrations. Lastly, by showing the pattern of NAc glucose fluctuations during glucose-drinking behavior, we discuss the relationships between "active" and "passive" glucose entry to the brain, its connection to behavior-related metabolic activation, and the possible functional significance of these changes in behavioral regulation. These data provide solid experimental support for the "neuronal" hypothesis of neurovascular coupling, which postulates the critical role of neuronal activity in rapid regulation of vascular tone, local blood flow, and entry of glucose and oxygen to brain tissue to maintain active cellular metabolism.

摘要

脑组织中的细胞外葡萄糖水平反映了其从动脉血中依赖梯度进入与用于细胞代谢之间的动态平衡。在这项工作中,我们展示了几组以前发表和未发表的数据,这些数据是通过在自由活动的大鼠中使用基于酶的葡萄糖生物传感器结合恒电位高速安培法获得的。首先,我们考虑与在生理相关条件下大鼠细胞外葡萄糖水平的电化学测量可靠性相关的基本方法学问题。其次,我们展示了由显著环境刺激在伏隔核(NAc)中诱导的葡萄糖反应的数据,并讨论了局部神经元激活与葡萄糖快速进入脑组织之间的关系。第三,通过展示静脉内和胃内给予葡萄糖后NAc葡萄糖变化的数据,我们讨论了血糖浓度变化后葡萄糖进入细胞外区域的其他机制。最后,通过展示葡萄糖饮用行为期间NAc葡萄糖波动的模式,我们讨论了“主动”和“被动”葡萄糖进入大脑之间的关系、其与行为相关代谢激活的联系以及这些变化在行为调节中的可能功能意义。这些数据为神经血管耦合的“神经元”假说提供了坚实的实验支持,该假说假定神经元活动在快速调节血管张力、局部血流以及葡萄糖和氧气进入脑组织以维持活跃细胞代谢方面起着关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf30/4304521/fbaf27e1066e/cn-2014-002304_0002.jpg

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