LaManna Joseph C, Salem Nicolas, Puchowicz Michelle, Erokwu Bernadette, Koppaka Smruta, Flask Chris, Lee Zhenghong
Department of Anatomy, Case Western Reserve University, Cleveland, Ohio 44106, USA.
Adv Exp Med Biol. 2009;645:301-6. doi: 10.1007/978-0-387-85998-9_45.
The brain is dependent on glucose as a primary energy substrate, but is capable of utilizing ketones such as beta-hydroxybutyrate (beta HB) and acetoacetate (AcAc), as occurs with fasting, prolonged starvation or chronic feeding of a high fat/low carbohydrate diet (ketogenic diet). In this study, the local cerebral metabolic rate of glucose consumption (CMRglu; microM/min/100g) was calculated in the cortex and cerebellum of control and ketotic rats using Patlak analysis. Rats were imaged on a rodent PET scanner and MRI was performed on a 7-Tesla Bruker scanner for registration with the PET images. Plasma glucose and beta HB concentrations were measured and 90-minute dynamic PET scans were started simultaneously with bolus injection of 2-Deoxy-2[18F]Fluoro-D-Glucose (FDG). The blood radioactivity concentration was automatically sampled from the tail vein for 3 min following injection and manual periodic blood samples were taken. The calculated local CMRGlu decreased with increasing plasma BHB concentration in the cerebellum (CMRGlu = -4.07*[BHB] + 61.4, r2 = 0.3) and in the frontal cortex (CMRGlu = -3.93*[BHB] + 42.7, r2 = 0.5). These data indicate that, under conditions of ketosis, glucose consumption is decreased in the cortex and cerebellum by about 10% per each mM of plasma ketone bodies.
大脑依赖葡萄糖作为主要能量底物,但也能够利用酮类物质,如β-羟基丁酸(βHB)和乙酰乙酸(AcAc),禁食、长期饥饿或长期食用高脂肪/低碳水化合物饮食(生酮饮食)时就会出现这种情况。在本研究中,使用Patlak分析法计算了对照大鼠和酮症大鼠皮质和小脑中的局部脑葡萄糖代谢率(CMRglu;微摩尔/分钟/100克)。大鼠在啮齿动物PET扫描仪上成像,并在7特斯拉布鲁克扫描仪上进行MRI扫描,以便与PET图像配准。测量血浆葡萄糖和βHB浓度,并在静脉推注2-脱氧-2-[18F]氟-D-葡萄糖(FDG)的同时开始90分钟的动态PET扫描。注射后从尾静脉自动采集3分钟的血液放射性浓度样本,并定期手动采集血液样本。计算得出,小脑(CMRGlu = -4.07*[BHB] + 61.4,r2 = 0.3)和额叶皮质(CMRGlu = -3.93*[BHB] + 42.7,r2 = 0.5)中的局部CMRGlu随着血浆BHB浓度的升高而降低。这些数据表明,在酮症状态下,皮质和小脑中的葡萄糖消耗量每增加1毫摩尔血浆酮体就会降低约10%。