Weiss Blaine E, Gant John C, Lin Ruei-Lung, Gollihue Jenna L, Rogers Colin B, Kraner Susan D, Rucker Edmund B, Katsumata Yuriko, Jiang Yang, Nelson Peter T, Wilcock Donna M, Sompol Pradoldej, Thibault Olivier, Norris Christopher M
Sanders-Brown Center on Aging, University of Kentucky College of Medicine, Lexington, KY 40536, USA.
Department of Pharmacology and Nutritional Sciences, University of Kentucky College of Medicine, Lexington, KY 40536, USA.
J Neurosci. 2025 Aug 15. doi: 10.1523/JNEUROSCI.0349-25.2025.
While cerebrovascular dysfunction and reactive astrocytosis are extensively characterized hallmarks of Alzheimer's disease (AD) and related dementias, the dynamic relationship between reactive astrocytes and cerebral vessels remains poorly understood. Here, we used jGCaMP8f and two photon microscopy to investigate calcium signaling in multiple astrocyte subcompartments, concurrent with changes in cerebral arteriole activity, in fully awake seven-to-eight-month-old male and female 5xFAD mice, a model for AD-like pathology, and wild-type (WT) littermates. In the absence of movement, spontaneous calcium transients in barrel cortex occurred more frequently in astrocyte somata, processes, and perivascular regions of 5xFAD mice. However, evoked arteriole dilations (in response to air puff stimulation of contralateral whiskers) and concurrent calcium transients across astrocyte compartments were reduced in 5xFAD mice relative to WTs. Synchronous activity within multi-cell astrocyte networks was also impaired in the 5xFAD group. Using a custom application to assess functional coupling between astrocyte endfeet and immediately adjacent arteriole segments, we detected deficits in calcium response probability in 5xFAD mice. Moreover, endfeet calcium transients following arteriole dilations exhibited a slower onset, reduced amplitude, and lacked relative proportionality to vasomotive activity compared to WTs. The results reveal nuanced alterations in 5xFAD reactive astrocytes highlighted by impaired signaling fidelity between astrocyte endfeet and cerebral arterioles. The results have important implications for the mechanistic underpinnings of brain hypometabolism and the disruption of neurophysiological communication found in AD and other neurodegenerative conditions. Astrocytes are an essential component of the neurovascular unit. Chronically reactive astrocyte phenotypes are mechanistically linked to deleterious features of Alzheimer's disease (AD) including impaired cerebral blood flow, hypometabolism, and synapse dysfunction/loss. Here, we use two photon imaging to show that reactive astrocytes in a fully awake mouse model of AD-like amyloid pathology are spontaneously hyperactive, exhibit impaired functional connectivity, and respond to dilations in immediately adjacent arterioles with poor fidelity. The results reveal a key point of communication breakdown between the brain and the cerebrovasculature.
虽然脑血管功能障碍和反应性星形胶质细胞增生是阿尔茨海默病(AD)及相关痴呆症的广泛特征,但反应性星形胶质细胞与脑血管之间的动态关系仍知之甚少。在此,我们使用jGCaMP8f和双光子显微镜研究了完全清醒的7至8个月大的雄性和雌性5xFAD小鼠(一种AD样病理模型)及其野生型(WT)同窝小鼠多个星形胶质细胞亚区室中的钙信号,同时观察脑小动脉活动的变化。在无运动状态下,5xFAD小鼠桶状皮层星形胶质细胞的胞体、突起和血管周围区域自发钙瞬变更为频繁。然而,与WT小鼠相比,5xFAD小鼠诱发的小动脉扩张(对同侧胡须吹气刺激的反应)以及星形胶质细胞各亚区室同时出现的钙瞬变减少。5xFAD组多细胞星形胶质细胞网络内的同步活动也受损。使用自定义应用程序评估星形胶质细胞终足与紧邻的小动脉段之间的功能耦合,我们检测到5xFAD小鼠钙反应概率存在缺陷。此外,与WT小鼠相比,小动脉扩张后终足钙瞬变的起始较慢、幅度减小,且与血管舒缩活动缺乏相对比例关系。结果揭示了5xFAD反应性星形胶质细胞的细微变化,突出表现为星形胶质细胞终足与脑小动脉之间信号保真度受损。这些结果对于脑代谢减退的机制基础以及AD和其他神经退行性疾病中发现的神经生理通讯中断具有重要意义。星形胶质细胞是神经血管单元的重要组成部分。慢性反应性星形胶质细胞表型在机制上与阿尔茨海默病(AD)的有害特征相关,包括脑血流量受损、代谢减退以及突触功能障碍/丧失。在此,我们使用双光子成像显示,在一个完全清醒的AD样淀粉样病理小鼠模型中,反应性星形胶质细胞自发过度活跃,功能连接受损,并且对紧邻小动脉的扩张反应保真度较差。结果揭示了大脑与脑血管之间通讯中断的关键点。