KEY POINTS: In the bladder suburothelial microvasculature, pericytes in different microvascular segments develop spontaneous Ca2+ transients with or without associated constrictions. Spontaneous Ca2+ transients in pericytes of all microvascular segments primarily rely on the cycles of Ca2+ uptake and release by the sarco- and endoplasmic reticulum. The synchrony of spontaneous Ca2+ transients in capillary pericytes exclusively relies on the spread of depolarizations resulting from the opening of Ca2+ -activated chloride channels (CaCCs) via gap junctions. CaCC-dependent depolarizations further activate L-type voltage-dependent Ca2+ channels as required for the synchrony of Ca2+ transients in pericytes of pre-capillary arterioles, post-capil...
Abstract—To study endothelial cell (EC) – specific Ca2 signaling in vivo we engineered transgenic m...
The lamina propria contains a dense network of cells, including interstitial cells (ICs), that may p...
Rationale: Precapillary arterioles control blood flow to tissues and their correct function is vital...
AbstractThe microcirculation is the site of gas and nutrient exchange. Control of central or local s...
Properties of spontaneous Ca²⁺ transients in the myenteric microvasculature of the guinea-pig stomac...
Pericytes, which are embedded in the basement membrane of the capillary wall, play important roles i...
Recent evidence suggests that capillary pericytes are contractile and play a crucial role in the reg...
2- and 3-dimensional confocal imaging of Fluo-4 loaded ureteric microvesells in situ allowed us to d...
Aims: Connexins form gap-junctions (GJs) that directly connect cells, thereby coordinating vascular ...
Increasing evidence indicates that pericytes are vulnerable cells, playing pathophysiological roles ...
SummaryThe precise regulation of cerebral blood flow is critical for normal brain function, and its ...
Pericytes have been implicated in various neuropathologies, yet little is known about their function...
AbstractIn ureteric microvessels the antagonistic relationship between Ca2+ signalling in endotheliu...
When red blood cells (RBCs) pass constrictions or small capillaries they need to pass apertures fall...
Ca2+ ions passing through a single or a cluster of Ca2+-permeable channels create microscopic, short...
Abstract—To study endothelial cell (EC) – specific Ca2 signaling in vivo we engineered transgenic m...
The lamina propria contains a dense network of cells, including interstitial cells (ICs), that may p...
Rationale: Precapillary arterioles control blood flow to tissues and their correct function is vital...
AbstractThe microcirculation is the site of gas and nutrient exchange. Control of central or local s...
Properties of spontaneous Ca²⁺ transients in the myenteric microvasculature of the guinea-pig stomac...
Pericytes, which are embedded in the basement membrane of the capillary wall, play important roles i...
Recent evidence suggests that capillary pericytes are contractile and play a crucial role in the reg...
2- and 3-dimensional confocal imaging of Fluo-4 loaded ureteric microvesells in situ allowed us to d...
Aims: Connexins form gap-junctions (GJs) that directly connect cells, thereby coordinating vascular ...
Increasing evidence indicates that pericytes are vulnerable cells, playing pathophysiological roles ...
SummaryThe precise regulation of cerebral blood flow is critical for normal brain function, and its ...
Pericytes have been implicated in various neuropathologies, yet little is known about their function...
AbstractIn ureteric microvessels the antagonistic relationship between Ca2+ signalling in endotheliu...
When red blood cells (RBCs) pass constrictions or small capillaries they need to pass apertures fall...
Ca2+ ions passing through a single or a cluster of Ca2+-permeable channels create microscopic, short...
Abstract—To study endothelial cell (EC) – specific Ca2 signaling in vivo we engineered transgenic m...
The lamina propria contains a dense network of cells, including interstitial cells (ICs), that may p...
Rationale: Precapillary arterioles control blood flow to tissues and their correct function is vital...