Vascular Inflammation

Vascular inflammation is an immune response within blood vessels that can alter vascular function and contribute to cardiovascular and systemic disease. It begins when endothelial cells detect injury, infection, or inflammatory signals and release mediators that increase adhesion molecules, recruit leukocytes, and change vessel permeability and tone. Persistent inflammation can promote endothelial dysfunction, atherosclerotic plaque formation, thrombosis, and vessel remodeling. Studying these processes helps researchers identify biomarkers, clarify disease mechanisms, and evaluate treatments for conditions such as atherosclerosis, vasculitis, hypertension, and other inflammatory disorders affecting the circulatory system.

Vascular Inflammation - Related Videos

Research

JoVE Journal - Medicine

Calcification of Vascular Smooth Muscle Cells and Imaging of Aortic Calcification and Inflammation

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Cited by 28 •

2016

Vascular calcification is an important predictor of and contributor to human cardiovascular disease. This protocol describes methods for inducing calcification of cultured primary vascular smooth muscle cells and for quantifying calcification and macrophage burden in animal aortas using near-infrared fluorescence imaging.

Education

JoVE Core - Biology

Inflammation

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2019

Overview In response to tissue injury and infection, mast cells initiate inflammation. Mast cells release chemicals that increase the permeability of adjacent blood capillaries and attract additional immune cells to the wound or site of infection. Neutrophils are phagocytic leukocytes that exit the bloodstream and engulf invading microbes. Blood clotting platelets seal the wound and fibers create a scaffold for wound healing. Macrophages engulf aging neutrophils to end the acute inflammatory...

Quantification of Atherosclerotic Plaque Activity and Vascular Inflammation using [18-F] Fluorodeoxyglucose Positron Emission Tomography/Computed Tomography (FDG-PET/CT)

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Cited by 76 •

2012

There is great need to identify atherosclerosis non-invasively, and here we demonstrate how FDG-PET/CT can be used to detect and quantify atherosclerotic plaque activity and vascular inflammation.

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.

Th17 Inflammation Model of Oropharyngeal Candidiasis in Immunodeficient Mice

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Cited by 11 •

2015

Although Candida infection models are available to study host immune resistance, a model to study T cell mediated immunopathology in the context of Candida infection is absent. Here we describe a method to establish Th17 immunopathology associated with oral Candida infection in immunodeficient mice.

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