Effects of chronic caffeine on patterns of brain blood flow and behavior throughout the sleep-wake cycle in freely behaving mice.

IF 2.2 Q2 MULTIDISCIPLINARY SCIENCES
PNAS nexus Pub Date : 2023-09-19 eCollection Date: 2023-09-01 DOI:10.1093/pnasnexus/pgad303
Kimiya Aframian, Dmitri Yousef Yengej, Sinifunanya Nwaobi, Shrayes Raman, Guido C Faas, Andrew Charles
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Abstract

Caffeine has significant effects on neurovascular activity and behavior throughout the sleep-wake cycle. We used a minimally invasive microchip/video system to continuously record effects of caffeine in the drinking water of freely behaving mice. Chronic caffeine shifted both rest and active phases by up to 2 h relative to the light-dark cycle in a dose-dependent fashion. There was a particular delay in the onset of rapid eye movement (REM) sleep as compared with non-REM sleep during the rest phase. Chronic caffeine increased wakefulness during the active phase and consolidated sleep during the rest phase; overall, there was no net change in the amount of time spent in the wake, sleep, or REM sleep states during caffeine administration. Despite these effects on wakefulness and sleep, chronic caffeine decreased mean cerebral blood volume (CBV) during the active phase and increased mean CBV during the rest phase. Chronic caffeine also increased heart rate variability in both the sleep and wake states. These results provide new insight into the effects of caffeine on the biology of the sleep-wake cycle. Increased blood flow during sleep caused by chronic caffeine may have implications for its potential neuroprotective effects through vascular mechanisms of brain waste clearance.

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慢性咖啡因对行为自由的小鼠在整个睡眠-觉醒周期中大脑血流模式和行为的影响。
咖啡因对整个睡眠-觉醒周期的神经血管活动和行为有显著影响。我们使用了一种微创微芯片/视频系统来连续记录行为自由的小鼠饮用水中咖啡因的影响。慢性咖啡因使休息和活动阶段都改变了2 h以剂量依赖的方式相对于明暗循环。在休息阶段,与非快速眼动睡眠相比,快速眼动睡眠的开始有一个特别的延迟。慢性咖啡因在活动期增加了清醒度,在休息期巩固了睡眠;总的来说,在服用咖啡因期间,在清醒、睡眠或快速眼动睡眠状态下花费的时间没有净变化。尽管这些对清醒和睡眠有影响,但慢性咖啡因在活动期降低了平均脑血容量(CBV),在休息期增加了平均CBV。慢性咖啡因还会增加睡眠和清醒状态下的心率变异性。这些结果为咖啡因对睡眠-觉醒周期生物学的影响提供了新的见解。慢性咖啡因引起的睡眠中血流量增加可能通过脑废物清除的血管机制对其潜在的神经保护作用产生影响。
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CiteScore
1.80
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