Findings reveal neuroinflammation alters astrocytic Ca2+ dynamics in Alzheimers disease, suggesting implications for neurovascular coupling.
Neuroinflammation and neurovascular dysfunction are two major pathologies in Alzheimers disease (AD), yet their interplay remains poorly understood. Astrocytes are central players in both brain immunity and neurovascular coupling. In this study, we induced neuroinflammation through systemic administration of lipopolysaccharide (LPS) in 12-month-old APP/PS1dE9 mice and simultaneously monitored the astrocyte Ca2+ signaling and the brain hemodynamics with two-photon microscopy. We showed that the spontaneous release of Ca2+ in astrocytes was elevated in AD mice and decreased by 14 days of LPS administration. The effects of LPS-induced inflammation on astrocytic Ca2+ signaling varied substantially between brief 3 sensory stimulation and sustained 30 second sensory stimulation with modest effects on vascular responses. These findings highlight the nuanced impact of neuroinflammation on astrocytic Ca2+ dynamics and brain hemodynamics in AD, shedding light on mechanisms that link these pathologies.
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Liu et al. (2025) studied this question.
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