Brain Extracellular Fluid

Brain extracellular fluid is the watery environment surrounding neurons and glial cells, where chemical signals and dissolved substances move between cells and the circulation. Its composition is tightly regulated: the blood–brain barrier controls entry from blood, while astrocytes help buffer ions such as potassium and maintain conditions needed for neuronal membrane potentials and synaptic transmission; fluid exchange with cerebrospinal fluid also supports solute movement and waste clearance. In neuroscience, studying this fluid helps explain how nutrients, neurotransmitters, drugs, and metabolic byproducts influence brain function, and how disrupted regulation contributes to neurological disease.

Brain Extracellular Fluid - Related Videos

Research

JoVE EoE - Neuropathology

Microdialysis of Interstitial Fluid from a Mouse Brain to Isolate Extracellular Proteins

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2025

The video demonstrates the process of using a microdialysis probe to collect extracellular proteins from the interstitial fluid (ISF) of a mouse brain. A microdialysis probe, equipped with a high-molecular-weight cut-off semi-permeable membrane, is inserted into the brain of an anesthetized mouse via an implanted guide cannula. The probe, connected to pumps, allows a physiological buffer to perfuse the brain tissue and mix with the ISF. Proteins in the ISF diffuse across the semi-permeable...

Vampiric Isolation of Extracellular Fluid from Caenorhabditis elegans

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Cited by 4 •

2012

The model organism C. elegans uses pseudocoelomic fluid as a passive circulatory system. Direct assay of this fluid has not been previously possible. Here we present a novel technique to directly assay the extracellular space, and use systemic silencing signals during an RNAi response as a proof of principle example.

Visualization of Extracellular Traps in Macrophages from Human Bronchoalveolar Lavage Fluids

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2025

This video demonstrates the immunolabeling of macrophage extracellular traps, METs, in bronchoalveolar macrophages from bronchoalveolar lavage fluid, and their visualization using a confocal microscope.

Characterizing Extracellular Space in a Brain Slice Using Ion-Selective and Iontophoresis Microelectrodes

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2025

This video demonstrates how to characterize the extracellular space in a brain slice by using ion-selective and iontophoresis microelectrodes to measure and compare electrical signals. This process helps determine the space's volume fraction and degree of twisting.

Research

JoVE Journal - Neuroscience
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Lateral Fluid Percussion: Model of Traumatic Brain Injury in Mice

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Cited by 125 •

2011

Lateral fluid percussion (LFP), an established model of traumatic brain injury in mice, is demonstrated. LFP fulfills three major criteria for animal models: validity, reliability and clinical relevance. The procedure, consisting of surgical craniotomy, fixation of hub followed by induction of injury, resulting in focal and diffuse injuries, is described.

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