Hyperglycemia selectively increases cerebral non-oxidative glucose consumption without affecting blood flow.

Tyler Blazey, John J Lee, Abraham Z Snyder, Manu S Goyal, Tamara Hershey, Ana Maria Arbeláez, Marcus E Raichle
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Abstract

Multiple studies have shown that hyperglycemia increases the cerebral metabolic rate of glucose (CMRglc) in subcortical white matter. This observation remains unexplained. Using positron emission tomography (PET) and pancreatic glucose clamps with basal insulin replacement in twenty-nine healthy young adults (34.5 years, SD = 10.1) we found that acute hyperglycemia increases non-oxidative CMRglc (i.e., aerobic glycolysis (AG)) in subcortical white mater as well as in medial temporal lobe structures, cerebellum and brainstem, all areas with low CMRglc during euglycemia. Surprisingly, hyperglycemia did not change regional cerebral blood flow (CBF), the cerebral metabolic rate of oxygen (CMRO2), or the blood-oxygen-level-dependent (BOLD) response. Correlation with existing regional gene expression data showed that brain regions where CMRglc increased have greater expression of hexokinase 2 (HK2). Simulations of glucose transport revealed that, unlike hexokinase 1, HK2 is not saturated at euglycemia, and thus can accommodate increased AG during hyperglycemia.

高血糖症选择性地增加大脑非氧化葡萄糖消耗而不影响血流。
多项研究表明,高血糖会增加皮质下白质中葡萄糖的脑代谢率(CMRglc)。这一观察结果至今仍无法解释。对29名健康青年(34.5岁,SD = 10.1)进行基础胰岛素替代的正电子发射断层扫描(PET)和胰糖夹,我们发现急性高血糖增加了皮质下白质、内侧颞叶结构、小脑和脑干的非氧化性CMRglc(即有氧糖溶解(AG)),这些区域在血糖正常时CMRglc都很低。令人惊讶的是,高血糖并没有改变局部脑血流量(CBF)、脑氧代谢率(cro2)或血氧水平依赖性(BOLD)反应。与已有区域基因表达数据的相关性显示,CMRglc升高的脑区有更高的己糖激酶2 (HK2)表达。葡萄糖运输模拟显示,与己糖激酶1不同,HK2在血糖正常时不饱和,因此可以适应高血糖时AG的增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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