Brain Fluid Homeostasis

Brain fluid homeostasis is the regulation of cerebrospinal fluid (CSF), interstitial fluid, and their solutes to maintain the stable chemical and physical environment required for nervous system function. The choroid plexus produces CSF, while the blood-brain barrier controls exchange between blood and neural tissue; CSF circulation, reabsorption, and glymphatic transport help distribute nutrients and remove waste while regulating pressure and ion balance. Disruption of these processes can contribute to conditions such as hydrocephalus, cerebral edema, and neurodegenerative disease. Studying brain fluid homeostasis therefore supports research into brain physiology, disease mechanisms, diagnostics, and potential treatments.

Brain Fluid Homeostasis - Related Videos

Education

JoVE Core - Anatomy and Physiology

What is Homeostasis?

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2023

Maintaining homeostasis requires that the body continuously maintain its internal conditions. Each physiological condition has a particular set point, from body temperature to blood pressure to levels of certain nutrients. A set point is the physiological value around which the normal range fluctuates. A normal range is a restricted set of values that is optimally healthful and stable. For example, the set point for normal human body temperature is approximately 37°C (98.6°F). Physiological...

Research

JoVE Journal - Biology

Monitoring Endoplasmic Reticulum Calcium Homeostasis Using a Gaussia Luciferase SERCaMP

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Cited by 8 •

2015

Endoplasmic reticulum calcium homeostasis is disrupted in diverse pathologies. A secreted ER calcium monitoring protein (SERCaMP) reporter can be used to detect disruptions in the ER calcium store. This protocol describes the use of a Gaussia luciferase SERCaMP to examine ER calcium homeostasis in vitro and in vivo.

pH Homeostasis

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2023

Acid-base homeostasis is essential for maintaining normal physiological activities in humans. The pH of various body fluids is strictly regulated because it is critical for the optimal activity of enzymes involved in metabolic reactions. Enzymes are basically proteins, so, any significant change in pH can affect their structure and activity. In humans, pH is regulated using three primary mechanisms— chemical buffer systems, respiratory regulation, and renal regulation. Respiratory Regulation of...

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.

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...

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