Arteriolar Endothelium

Arteriolar endothelium is the thin layer of endothelial cells lining small arteries and arterioles, where it regulates blood flow and helps maintain vascular homeostasis. In response to changes in pressure, shear stress, and chemical signals, these cells release mediators such as nitric oxide, prostacyclin, and endothelin that alter smooth muscle tone, while controlling vessel permeability and interactions with circulating blood cells. Arteriolar endothelial function is therefore central to tissue perfusion, blood pressure regulation, inflammation, and oxygen delivery. Studying this specialized vascular interface helps researchers understand conditions such as hypertension, diabetes, atherosclerosis, and microvascular dysfunction.

Arteriolar Endothelium - Related Videos

Research

JoVE EoE - Neuropathology

Analysis of Calcium Dynamics and Membrane Potential Changes in a Mouse Arteriolar Endothelium

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2025

Source: Hakim, M. A. et al., Isolation and Functional Analysis of Arteriolar Endothelium of Mouse Brain Parenchyma. J. Vis. Exp. (2022).This video demonstrates the functional analysis of an arteriolar endothelial tube isolated from a mouse brain. It outlines the steps for measuring intracellular calcium levels and membrane potential, both at baseline and in response to pharmacological stimulation.

Isolation and Functional Analysis of Arteriolar Endothelium of Mouse Brain Parenchyma

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Cited by 2 •

2022

Intensive preparation of intact mouse cerebral endothelial "tubes" from cerebral parenchymal arterioles is illustrated for studying cerebral blood flow regulation. Further, we demonstrate the experimental strengths of this endothelial study model for fluorescence imaging and electrophysiology measurement of key cellular signaling pathways, including changes in intracellular [Ca2+] and membrane potential.

Real-time Imaging of Heterotypic Platelet-neutrophil Interactions on the Activated Endothelium During Vascular Inflammation and Thrombus Formation in Live Mice

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Cited by 29 •

2013

Here we report an experimental technique of fluorescence intravital microscopy to visualize heterotypic platelet-neutrophil interactions on the activated endothelium during vascular inflammation and thrombus formation in live mice. This microscopic technology will be valuable to study the molecular mechanism of vascular disease and to test pharmacologic agents under pathophysiological conditions.

Research

JoVE Journal - Immunology and Infection
Free Sample

Imaging Leukocyte Adhesion to the Vascular Endothelium at High Intraluminal Pressure

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Cited by 22 •

2011

This is a method to visualise leukocyte adhesion to the endothelium in harvested pressurised vessels. The technique enables studying vascular adhesion under shear flow with differing intraluminal pressures up to 200 mmHg thus mimic-ing the pathophysiological conditions of high blood pressure.

Intraluminal Drug Delivery to the Mouse Arteriovenous Fistula Endothelium

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Cited by 5 •

2016

After puncturing the aorta through the inferior vena cava (IVC) to create an aorto-caval fistula in the mouse, solution containing a drug is infused into the IVC via the same needle, followed by incubation. This method enables more robust drug delivery to the venous endothelium compared to the external route.

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