Brain-gut Regulation

Brain-gut regulation is the bidirectional communication that coordinates brain function with gastrointestinal activity, influencing digestion, mood, stress responses, and overall health. It operates through interconnected neural, endocrine, immune, and microbial pathways, including vagal signaling, stress-hormone circuits, inflammatory mediators, and chemical signals produced by intestinal microorganisms. In medicine, this framework helps explain how psychological stress can alter motility and sensitivity, while gastrointestinal inflammation or microbial changes can affect behavior and cognition. Understanding brain-gut regulation supports research into irritable bowel syndrome, inflammatory bowel disease, functional gastrointestinal disorders, and emerging treatments that target stress pathways, diet, the microbiome, or neural communication.

Brain-gut Regulation - Related Videos

Education

JoVE Core - Microbiology

Gut-Brain Axis

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2026

The gut–brain axis is a bidirectional communication system that connects the gastrointestinal tract and the brain. This interaction is mediated through multiple pathways, including the vagus nerve, hormonal signals, immune responses, and chemical messengers produced by gut microbes.Microbial Contributions to Brain FunctionGut microbiota contributes significantly to brain function by producing neuroactive compounds. These include neuroactive compounds that influence neurotransmitters such as...

Research

JoVE Journal - Neuroscience

Brain Imaging Investigation of the Neural Correlates of Emotion Regulation

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Cited by 6 •

2011

We present a protocol that allows investigation of the neural correlates of deliberate and automatic emotion regulation, using functional magnetic resonance imaging. This protocol can be used in healthy participants, both young and older, as well as in clinical patients.

Extracting DNA from the Gut Microbes of the Termite (Zootermopsis Angusticollis) and Visualizing Gut Microbes

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Cited by 18 •

2007

This video illustrates the technique for extracting DNA from the species of microbes resident in the termite hindgut. The preparation of a wet mount slide, which is useful for visualizing the gut microbial community is also illustrated, and a tour through the species-rich gut environment is given.

Intracranial Injection of Gut-Derived Microbial Metabolites in a Mouse Model

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2025

Source: Liou, C. et al. Intracerebroventricular Delivery of Gut-Derived Microbial Metabolites in Freely Moving Mice. J. Vis. Exp. (2022).This video demonstrates the intracranial injection of short-chain fatty acids (SCFAs) in a freely moving mouse to study their effects on brain-mediated behavior. An injector cannula is inserted into a guide cannula implanted in the mouse brain. After recovery, the mouse acclimates in a novel cage. SCFAs are then administered, and locomotor behavior is recorded.

Assessing the Role of Gut Microbiota in Modulating Hepatitis B Infection in Mice

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2026

Take a control mouse with a normal gut microbiota and an experimental mouse with depleted gut microbiota. The depletion compromises the integrity of the gut barrier.This enables bacteria to translocate through the blood vessel into the liver tissue.Inject both mice with the hepatitis B virus or HBV plasmid to induce an HBV infection in the liver tissue.In the control mouse, the T cell detects an infected liver cell through the interaction of its receptors with viral antigens, and produces...

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