Thurston J H, Hauhart R E, Schiro J A
Washington University School of Medicine, Department of Pediatrics, Children's Hospital, St. Louis, Missouri 63110.
Metab Brain Dis. 1986 Mar;1(1):63-82. doi: 10.1007/BF00998478.
In normal suckling-weanling mice, DL-beta-hydroxybutyrate (30 mmol/kg ip) stimulated insulin secretion and reduced plasma glucose levels. In the brains of these animals, glucose levels were tripled due to a reduced rate of glucose utilization (determined by deoxyglucose phosphorylation). Other metabolite changes were compatible with inhibition of hexokinase, phosphofructokinase, glyceraldehyde-P-dehydrogenase, and pyruvate dehydrogenase activities. In contrast to the decrease in cerebral glycolysis, metabolite changes were compatible with an increase in the Krebs citric acid metabolic flux. The brain energy charge was also elevated. While it is generally believed that ketone bodies cannot sustain normal brain metabolism and function in the absence of glucose, DL-beta-hydroxybutyrate (20 or 30 mmol/kg ip) reversed insulin (100 U/kg sc)-induced hypoglycemia despite the persistence of a critically reduced plasma glucose concentration and near-zero brain glucose levels. Metabolic correlates of possible significance in the behavioral recovery from coma were reductions of the elevated levels of brain aspartate to below normal and ammonia levels to normal. Levels of acetyl CoA were unchanged both before and after treatment with beta-hydroxybutyrate.
在正常的哺乳-断奶小鼠中,DL-β-羟基丁酸(30 mmol/kg,腹腔注射)刺激胰岛素分泌并降低血浆葡萄糖水平。在这些动物的大脑中,由于葡萄糖利用率降低(通过脱氧葡萄糖磷酸化测定),葡萄糖水平增加了两倍。其他代谢物变化与己糖激酶、磷酸果糖激酶、甘油醛-P-脱氢酶和丙酮酸脱氢酶活性的抑制相一致。与大脑糖酵解的减少相反,代谢物变化与三羧酸循环代谢通量的增加相一致。大脑的能量电荷也升高。虽然一般认为在没有葡萄糖的情况下酮体不能维持正常的大脑代谢和功能,但DL-β-羟基丁酸(20或30 mmol/kg,腹腔注射)逆转了胰岛素(100 U/kg,皮下注射)诱导的低血糖,尽管血浆葡萄糖浓度严重降低且大脑葡萄糖水平接近零仍持续存在。在从昏迷中行为恢复方面可能具有重要意义的代谢相关性是,大脑天冬氨酸水平升高降至正常以下,氨水平降至正常。在用β-羟基丁酸治疗前后,乙酰辅酶A水平均未改变。