ePoster

ENDOTHELIAL CALCIUM SIGNALLING REGULATES CAPILLARY BLOOD FLOW DYNAMICS <EM>IN VIVO</EM>

Craig Brownand 2 co-authors

University of Victoria

FENS Forum 2026 (2026)
Barcelona, Spain
Board PS01-07AM-650

Presentation

Date TBA

Board: PS01-07AM-650

Poster preview

ENDOTHELIAL CALCIUM SIGNALLING REGULATES CAPILLARY BLOOD FLOW DYNAMICS <EM>IN VIVO</EM> poster preview

Event Information

Poster Board

PS01-07AM-650

Abstract

Endothelial calcium (Ca2+) signalling is a regulator of vascular tone, yet its in vivo role in controlling cerebral microvascular function remains incompletely understood, in part because of limitations in imaging and manipulating (Ca2+) specifically within endothelium. Using in vivo two-photon microscopy in transgenic mice expressing GCaMP8m selectively in cerebral endothelial cells, we first examined the spatial and temporal kinetics of Ca2+ transients. Under resting conditions, endothelial cells exhibit sparse, low frequency transients of variable durations (1-30s). These Ca2+ transients showed a tendency to precede vessel dilation, but could also follow as well. To determine what role endothelial Ca2+ transient play in regulating cerebral blood flow (CBF), we triggered endothelial Ca2+ waves with injection of deschloroclozapine (DCZ) in mice expressing DREADD hM3Dq receptors in endothelial cells. Within 20-30s after injection of DCZ, we observed a significant elevation of Ca2+ in endothelial cells that preceded a 5-20% increase in vessel diameter, primarily in the penetrating arteriole and associated 1st-3rd order capillary branches. Laser doppler experiments confirmed the significant increase in CBF associated with stimulating endothelial Ca2+ in DREADD expressing mice. Experiments are underway to determine if dampening endothelial Ca2+ transients affect the cerebral microcirculation under resting and stimulation conditions. These findings highlight a key role for endothelial Ca2+ signalling in the regulation of cerebral blood flow and microvascular dynamics in vivo.

Recommended posters

Cookies

We use essential cookies to run the site. Analytics cookies are optional and help us improve World Wide. Learn more.