Roy Maggie, Fortier Mélanie, Rheault François, Edde Manon, Croteau Etienne, Castellano Christian-Alexandre, Langlois Francis, St-Pierre Valérie, Cuenoud Bernard, Bocti Christian, Fulop Tamas, Descoteaux Maxime, Cunnane Stephen C
Research Center on Aging CIUSSS de l'Estrie-CHUS Sherbrooke Quebec Canada.
Department of Pharmacology and Physiology Université de Sherbrooke Sherbrooke Quebec Canada.
Alzheimers Dement (N Y). 2021 Nov 17;7(1):e12217. doi: 10.1002/trc2.12217. eCollection 2021.
White matter (WM) energy supply is crucial for axonal function and myelin maintenance. An exogenous source of ketones, the brain's alternative fuel to glucose, bypasses the brain's glucose-specific energy deficit and improves cognitive outcomes in mild cognitive impairment (MCI). How an additional supply of ketones affects glucose or ketone uptake in specific WM fascicles in MCI has not previously been reported.
This 6-month interventional study included MCI participants randomized to a placebo ( = 16) or ketogenic medium chain triglyceride (kMCT; = 17) drink. A neurocognitive battery and brain imaging were performed pre- and post-intervention. WM fascicle uptake of ketone and glucose and structural properties were assessed using positron emission tomography and diffusion imaging, respectively.
Ketone uptake was increased in the kMCT group by 2.5- to 3.2-fold in all nine WM fascicles of interest ( < .001), an effect seen both in deep WM and in fascicle cortical endpoints. Improvement in processing speed was positively associated with WM ketone uptake globally and in individual fascicles, most importantly the fornix ( = +0.61; = .014).
A 6-month kMCT supplement improved WM energy supply in MCI by increasing ketone uptake in WM fascicles. The significant positive association with processing speed suggests that ketones may have a role in myelin integrity in MCI.
白质(WM)能量供应对于轴突功能和髓鞘维持至关重要。酮作为大脑葡萄糖的替代燃料,其外源供应绕过了大脑特定于葡萄糖的能量不足,并改善了轻度认知障碍(MCI)患者的认知结果。此前尚未报道额外供应酮如何影响MCI患者特定白质束中的葡萄糖或酮摄取。
这项为期6个月的干预性研究纳入了MCI参与者,他们被随机分为接受安慰剂(n = 16)或生酮中链甘油三酯(kMCT;n = 17)饮料组。在干预前后进行了神经认知测试和脑成像。分别使用正电子发射断层扫描和扩散成像评估白质束对酮和葡萄糖的摄取以及结构特性。
kMCT组中所有九个感兴趣的白质束的酮摄取增加了2.5至3.2倍(P <.001) 在深部白质和白质束皮质端点均观察到这种效应。处理速度的改善与整体白质束以及单个白质束中的酮摄取呈正相关,最重要的是穹窿(r = +0.61;P = 0.014)。
为期6个月的kMCT补充剂通过增加白质束中的酮摄取改善了MCI患者的白质能量供应。与处理速度的显著正相关表明酮可能在MCI患者的髓鞘完整性中发挥作用。