Smith Diarmuid, Pernet Andrew, Hallett William A, Bingham Emma, Marsden Paul K, Amiel Stephanie A
Department of Diabetes, Endocrinology and Internal Medicine, Guy's Kings and St Thomas', School of Medicine, King's College, London, United Kingdom.
J Cereb Blood Flow Metab. 2003 Jun;23(6):658-64. doi: 10.1097/01.WCB.0000063991.19746.11.
Recent in vitro studies suggest that lactate, rather than glucose, may be the preferred fuel for neuronal metabolism. The authors examined the effect of lactate on global brain glucose uptake in euglycemic human subjects using 18 fluoro-deoxyglucose (FDG) positron emission tomography (PET). Eight healthy men, aged 40 to 54 years, underwent a 60-minute FDG-PET scan on two occasions in random order. On one occasion, 6.72% sodium lactate was infused at a rate of 50 micro mol. kg-1. min-1 for 20 minutes and then reduced to 30 micro mol. kg-1. min-1; 1.4% sodium bicarbonate was infused as a control on the other occasion. Plasma glucose levels were not different between the two groups (5.3 +/- 0.23 and 5.3 +/- 0.24 mmol/L, P = 0.55). Plasma lactate was significantly elevated by lactate infusion (4.08 +/- 0.35 vs. 0.63 +/- 0.22 mmol/L, P < 0.0005. The whole-brain rate of glucose uptake was significantly reduced by approximately 17% during lactate infusion (0.195 +/- 0.022 vs. 0.234 +/- 0.020 micro mol. g-1. min-1, P = 0.001). The authors conclude that, in vivo in humans, circulating lactate is used by the brain at euglycemia, with sparing of glucose.
最近的体外研究表明,乳酸而非葡萄糖可能是神经元代谢的首选燃料。作者使用18氟脱氧葡萄糖(FDG)正电子发射断层扫描(PET),研究了乳酸对正常血糖水平人类受试者全脑葡萄糖摄取的影响。八名年龄在40至54岁之间的健康男性,随机分两次接受了60分钟的FDG-PET扫描。一次,以50微摩尔·千克-1·分钟-1的速率输注6.72%的乳酸钠20分钟,然后降至30微摩尔·千克-1·分钟-1;另一次输注1.4%的碳酸氢钠作为对照。两组之间的血浆葡萄糖水平无差异(5.3±0.23和5.3±0.24毫摩尔/升,P = 0.55)。输注乳酸后血浆乳酸显著升高(4.08±0.35对0.63±0.22毫摩尔/升,P < 0.0005)。在输注乳酸期间,全脑葡萄糖摄取率显著降低约17%(0.195±0.022对0.234±0.020微摩尔·克-1·分钟-1,P = 0.001)。作者得出结论,在人体体内,正常血糖水平时大脑会利用循环中的乳酸,从而节省葡萄糖。