Basilar Artery Cells

Basilar artery cells are the endothelial, smooth muscle, and connective-tissue cells that form and maintain the wall of the basilar artery, a vessel supplying blood to the brainstem and posterior brain. Endothelial cells detect changes in blood flow and release signaling molecules such as nitric oxide, while smooth muscle cells respond by contracting or relaxing to regulate vessel diameter and cerebral perfusion. Studying these cells helps clarify how vascular tone is controlled and how injury, inflammation, or abnormal remodeling may contribute to conditions such as ischemic stroke, vasospasm, and aneurysm. Their behavior also supports research on cerebrovascular disease mechanisms and potential therapies.

Basilar Artery Cells - Related Videos

Research

JoVE Journal - Medicine

Recording of Inward Rectifying K+ Currents in Freshly Isolated Basilar Artery Smooth Muscle Cells by Patch Clamp Technique

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2025

This protocol describes a rapid and efficient method for isolating smooth muscle cells from the rat basilar artery and recording inward rectifying potassium channel currents in these cells using the whole-cell patch clamp technique. It offers a novel approach for researchers studying the basilar artery and ion channels.

A Cell Culture Model of Resistance Arteries

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Cited by 5 •

2017

A cell culture model of resistance arteries is described, allowing for the dissection of signaling pathways in endothelium, smooth muscle, or between endothelium and smooth muscle (the myoendothelial junction). The selective application of agonists or protein isolation, electron microscopy, or immunofluorescence can be utilized using this cell culture model.

Isolation of Human Umbilical Arterial Smooth Muscle Cells (HUASMC)

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Cited by 8 •

2010

The umbilical cords are used to isolate smooth muscle cells by different ways. In this work we used the enzymatic treatment to isolated smooth muscle cells.

Education

JoVE Science Education - Clinical Skills

Arterial Line Placement

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2023

Source: Sharon Bord, MD, Department of Emergency Medicine, The Johns Hopkins University School of Medicine, Maryland, USA When monitoring patients, it is important to obtain values that are accurate and reliable. Blood pressure monitoring is one of the essential vital signs, and for a majority of patients, measuring it utilizing non-invasive techniques provides accurate values. However, there are situations in which the blood pressure requires more exact, specific, and reliable measurements.

Isolation of Pulmonary Artery Smooth Muscle Cells from Neonatal Mice

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Cited by 16 •

2013

We have developed a novel and reproducible technique to isolate primary cultures of pulmonary artery smooth muscle cells (PASMC) from mice as young as P7, thereby allowing better study of the signaling pathways involved in neonatal smooth muscle cell contraction and relaxation.

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