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Pericyte pannexin1 controls cerebral capillary diameter and supports memory function

Nature Communications. 2025-07; 
Sandra Mai-Morente, Eugenia Isasi, Alberto Rafael, Gonzalo Budelli, Silvia Olivera-Bravo, Nathalia Vitureira, Verónica Abudara Departamento de Fisiología, Facultad de Medicina, Universidad de la República, Montevideo, Uruguay.
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Abstract

In the blood-brain-barrier, contractile pericytes fine-tune the capillary resistance and blood supply to meet neuro-metabolic demands; molecular players governing these functions remain unclear. Here we show that mice cerebral pericytes express functional pannexin1 (Panx1) channels, which drive efflux of ATP, a key activator of pericyte contractility. In hippocampal slices, pericyte Panx1 mediates capillary diameter changes in response to extracellular ATP fluctuations and glutamatergic synaptic transmission, known to contribute functional hyperaemia. Pharmacological inhibition of Panx1 in mice induces capillary widening in the cortex and hippocampus. Genetic deletion of pericyte Panx1 disrupts learning-evoked ... More

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