Brain Inflammation

Brain inflammation, or neuroinflammation, is the central nervous system’s immune response to infection, injury, toxins, or other disturbances, and it can influence neural function and disease progression. Activated microglia and astrocytes release cytokines and other signaling molecules, while changes in the blood-brain barrier regulate the movement of immune cells and substances into brain tissue. In neuroscience, studying these processes helps explain how inflammation contributes to conditions such as neurodegeneration, brain injury, and multiple sclerosis. Measuring inflammatory markers and glial responses can support disease research, therapeutic development, and efforts to distinguish protective immune activity from damaging chronic inflammation.

Brain Inflammation - Related Videos

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...

Research

JoVE Journal - Medicine

Bioluminescence and Near-infrared Imaging of Optic Neuritis and Brain Inflammation in the EAE Model of Multiple Sclerosis in Mice

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Cited by 4 •

2017

We show a technique for in vivo live bioluminescence and near-infrared imaging of optic neuritis and encephalitis in the experimental autoimmune encephalomyelitis (EAE) model for multiple sclerosis in SJL/J mice.

In vivo Imaging Method to Distinguish Acute and Chronic Inflammation

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Cited by 25 •

2013

We describe a non-invasive imaging method for distinguishing inflammatory stages. Systemic delivery of luminol reveals areas of acute inflammation dependent upon MPO activity in neutrophils. In contrast, injection of lucigenin allows for visualization of chronic inflammation dependent upon Phox activity in macrophages.

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.

A Ferret Model of Inflammation-sensitized Late Preterm Hypoxic-ischemic Brain Injury

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Cited by 15 •

2019

The method describes inflammation-sensitized hypoxic-ischemic and hyperoxic brain injury in the P17 ferret to model the complex interaction between prolonged inflammation and oxidative brain injury experienced in a number of late preterm infants.

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