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Resilience to neuronal hyperactivity and restoration of the neuroimmune interactome by blocking fibrin-induced microglia activation in Alzheimers disease

Yan, Z.; Mendiola, A. S.; Lauderdale, K.; Kim, K.-Y.; Yong, Y.; Leng, K.; Bushong, E. A.; Schuck, R.; Meyer-Franke, A.; Agrawal, A.; Traglia, M.; Gill, N.; Thomas, R.; Keller, J. N.; Karvelas, N.; Vasquez, M. F.; Ballard, D. C.; Madany, M.; Simms, J.; Guo, B.; Tognatta, R.; Alzamora, M. d. P. S.; Meza-Acevedo, R.; Cabriga, B.; Pierson, K. N.; Kourita, L.; Han, K.; Ryu, J. K.; Miller, B. L.; Elahi, F.; Ellisman, M. H.; Palop, J. J.; Akassoglou, K.

2026-05-07 neuroscience
10.64898/2026.05.01.722077 bioRxiv
Show abstract

Cerebrovascular pathology and neuronal network dysfunction are early features of Alzheimers disease (AD) associated with neuroinflammation and cognitive decline, but the vascular and immune triggers of neuronal hyperactivity remain largely unknown. Here, we show that the blood coagulation protein fibrin disrupts microglia-neuron interactions, promoting neuronal hyperactivity in an AD mouse model. Genetic elimination of the fibrin inflammatory domain reduced neuronal hyperactivity, restored dynamic microglial interactions with active neurons and protected from high-risk decision making in 5XFAD mice. Leveraging the transcriptional signatures of microglia and inhibitory and excitatory neurons, a ligand-receptor atlas revealed fibrin-dependent disruption of innate immune and glutamatergic signaling between microglia and neurons in AD mice. Patients with AD also showed a correlation of cerebrospinal fluid (CSF) fibrinogen levels with biomarkers of inflammation, vascular and synaptic dysfunction. Thus, resilience to neuronal hyperactivity and restoration of the neuroimmune interactome by targeting fibrin may have therapeutic implications for Alzheimers disease and related conditions. HighlightsO_LIVascular-microglia axis drives neuronal hyperactivity C_LIO_LIFibrin inflammatory activity disrupts the microglia-neuron interactome C_LIO_LIMicroglia activation by fibrin impairs decision-making in AD mice C_LIO_LISynaptic dysfunction and immune biomarkers correlate with CSF fibrinogen in AD patients C_LI

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