Centre for Chronobiology, University Psychiatric Clinics, University of Basel, 4002 Basel, Switzerland.
Transfaculty Research Platform, Molecular and Cognitive Neurosciences, University of Basel, 4055 Basel, Switzerland.
Cereb Cortex. 2021 May 10;31(6):3096-3106. doi: 10.1093/cercor/bhab005.
Caffeine is commonly used to combat high sleep pressure on a daily basis. However, interference with sleep-wake regulation could disturb neural homeostasis and insufficient sleep could lead to alterations in human gray matter. Hence, in this double-blind, randomized, cross-over study, we examined the impact of 10-day caffeine (3 × 150 mg/day) on human gray matter volumes (GMVs) and cerebral blood flow (CBF) by fMRI MP-RAGE and arterial spin-labeling sequences in 20 habitual caffeine consumers, compared with 10-day placebo (3 × 150 mg/day). Sleep pressure was quantified by electroencephalographic slow-wave activity (SWA) in the previous nighttime sleep. Nonparametric voxel-based analyses revealed a significant reduction in GMV in the medial temporal lobe (mTL) after 10 days of caffeine intake compared with 10 days of placebo, voxel-wisely adjusted for CBF considering the decreased perfusion after caffeine intake compared with placebo. Larger GMV reductions were associated with higher individual concentrations of caffeine and paraxanthine. Sleep SWA was, however, neither different between conditions nor associated with caffeine-induced GMV reductions. Therefore, the data do not suggest a link between sleep depth during daily caffeine intake and changes in brain morphology. In conclusion, daily caffeine intake might induce neural plasticity in the mTL depending on individual metabolic processes.
咖啡因通常被用于日常对抗高睡眠压力。然而,对睡眠-觉醒调节的干扰可能会扰乱神经内稳态,而睡眠不足可能导致人类灰质的改变。因此,在这项双盲、随机、交叉研究中,我们通过 fMRI MP-RAGE 和动脉自旋标记序列,在 20 名习惯性咖啡因消费者中,与 10 天安慰剂(3×150mg/天)相比,检查了 10 天咖啡因(3×150mg/天)对人脑灰质体积(GMV)和脑血流(CBF)的影响。通过前一个夜间睡眠的脑电图慢波活动(SWA)来量化睡眠压力。非参数体素基分析显示,与 10 天安慰剂相比,咖啡因摄入 10 天后内侧颞叶(mTL)的 GMV 显著减少,体素-wise 调整了 CBF,考虑到咖啡因摄入后与安慰剂相比灌注减少。GMV 减少较大与个体咖啡因和茶碱浓度较高有关。然而,睡眠 SWA 在两种情况下没有差异,也与咖啡因引起的 GMV 减少无关。因此,这些数据表明,在日常咖啡因摄入期间的睡眠深度与大脑形态变化之间没有联系。总之,根据个体的代谢过程,每日咖啡因摄入可能会导致 mTL 中的神经可塑性。