Vasculitis

Vasculitis is a group of disorders characterized by inflammation of blood vessel walls, a process that can disrupt circulation and damage tissues throughout the body. Immune-mediated injury causes swelling, structural weakening, narrowing, or blockage of affected vessels, limiting blood flow and sometimes producing aneurysms or thrombosis. In medicine, clinicians classify vasculitis by the vessel size and organs involved, then combine symptoms, laboratory tests, imaging, and biopsy findings to guide diagnosis. Treatment aims to suppress harmful inflammation and prevent irreversible organ injury, while research continues to clarify disease mechanisms and develop more targeted therapies.

Vasculitis - Related Videos

Research

JoVE EoE - Neuroimaging

Dark Blood Magnetic Resonance Imaging for Visualizing Inflamed Intracranial Arteries

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2025

Start with a human patient with cerebral vasculitis, which causes inflammation and increased permeability of blood vessels in the brain.Place the patient's head inside the radiofrequency, or RF, coil of a magnetic resonance imaging, or MRI, machine.Initiate magnetic resonance angiography, or MRA, which uses RF pulses to image blood flow.Protons in flowing blood generate strong signals, making blood vessels appear bright, while weak signals from stationary tissues result in a dark...

Generation of Two-color Antigen Microarrays for the Simultaneous Detection of IgG and IgM Autoantibodies

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Cited by 9 •

2016

We describe here a method to generate customizable antigen microarrays that can be used for the simultaneous detection of serum IgG and IgM autoantibodies from humans and mice. These arrays allow for high-throughput and quantitative detection of antibodies against any antigens or epitopes of interest.

Research

JoVE Journal - Biology
Free Sample

Preparation and Culture of Rat Lens Epithelial Explants for Studying Terminal Differentiation

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Cited by 21 •

2009

Explants of the central region of rat lens epithelia differentiate synchronously when cultured in the presence of FGF-2. Immunofluorescence microscopy of such cultures can provides novel information about gene expression and signaling events associated with terminal differentiation.

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