Component

The GABA neuroglial cycle

The GABA neuroglial cycle. Species, exposure and limitations are retained in each linked claim.

1 recorded relationships. Experimental role, claim status and evidence remain attached to each record.

How nutrients influence it

Every nutrient with a recorded effect on this component, credited to the nutrient that acted rather than the chapter that recorded it. Open a nutrient to see the findings and the conditions they were measured under.

How nutrients reach it in more than one step

Chains of two or more recorded steps that end here, grouped by the nutrient they start from. Each step is a separate finding, so a chain is a route a mechanism could take, not proof that it does.

Tracing routes…

What it does

Every recorded relationship this component is part of, grouped by its role. Plain wording comes first; the technical statement follows.

Recorded relationships

Where it participates (unsigned role)

  1. Intraperitoneal acetate resulted in appetite suppression and hypothalamic neuronal activation patterning, was associated with activation of acetyl-CoA carboxylase and changes in the expression profiles of regulatory neuropeptides that favour appetite suppression, and regionally increased the labelling of the glutamate-glutamine and GABA neuroglial cycles, suggesting a direct role for acetate in central appetite regulation.

    Acetate → Appetite source_derived_draftungraded
    Experimental context and source evidence
    evidence_span
    {"source_cache": "artifacts/acetate-research/24781306.abstract.txt", "locator": "Indexed abstract; zero-based, end-exclusive Unicode character offsets", "file_sha256": "4a1cc3cf5135e5856a281cd391c82611caa57afa2f837b0343cf048bb2c11e97", "start_char": 0, "end_char": 1135, "text_sha256": "4a1cc3cf5135e5856a281cd391c82611caa57afa2f837b0343cf048bb2c11e97"}
    experimental_model
    In vivo carbon-11 acetate PET-CT in rodents with carbon-13 high-resolution magic-angle-spinning spectroscopy
    exposure
    Colonic and intraperitoneal acetate, and carbon-13 labelled fermentable carbohydrate
    limitations
    Traces the molecule from colon to brain and then measures what it does there. The appetite endpoint is rodent, and intraperitoneal administration is not a dietary exposure.
    nutrient_topic
    Acetic acid research collection; topical membership is not evidence of a direct clinical effect, and the ingested acid is recorded separately from the circulating acetate anion. · Acetic acid
    organism
    Rodent
    plain_language
    Once there it changes the hypothalamic circuits that set hunger.
    primary_references
    [acetate-p24781306] The short-chain fatty acid acetate reduces appetite via a central homeostatic mechanism. (2014). https://pubmed.ncbi.nlm.nih.gov/24781306/ DOI: 10.1038/ncomms4611
    tissue_or_cell_type
    Colon, blood-brain barrier and hypothalamus

    Acetic acid: the ingested acid, the receptors acetate binds, the acetyl-CoA it becomes, and the acetyl groups that reach histones (2026-09-21) · lines 719–730

    AI-assisted literature curation; primary study URLs and scope retained in the document and extraction. Not publisher full text. · supports · In vivo carbon-11 acetate PET-CT in rodents with carbon-13 high-resolution magic-angle-spinning spectroscopy · source_derived_draft · unverified_draft

    ### acetate-acetate-suppresses-appetite Intraperitoneal acetate resulted in appetite suppression and hypothalamic neuronal activation patterning, was associated with activation of acetyl-CoA carboxylase and changes in the expression profiles of regulatory neuropeptides that favour appetite suppression, and regionally increased the labelling of the glutamate-glutamine and GABA neuroglial cycles, suggesting a direct role for acetate in central appetite regulation. Condition category: normal nutrient_topic: Acetic acid research collection; topical membership is not evidence of a direct clinical effect, and the ingested acid is recorded separately from the circulating acetate anion. plain_language: Once there it changes the hypothalamic circuits that set hunger. organism: Rodent tissue_or_cell_type: Colon, blood-brain barrier and hypothalamus experimental_model: In vivo carbon-11 acetate PET-CT in rodents with carbon-13 high-resolution magic-angle-spinning spectroscopy limitations: Traces the molecule from colon to brain and then measures what it does there. The appetite endpoint is rodent, and intraperitoneal administration is not a dietary exposure. exposure: Colonic and intraperitoneal acetate, and carbon-13 labelled fermentable carbohydrate evidence_span: {"source_cache": "artifacts/acetate-research/24781306.abstract.txt", "locator": "Indexed abstract; zero-based, end-exclusive Unicode character offsets", "file_sha256": "4a1cc3cf5135e5856a281cd391c82611caa57afa2f837b0343cf048bb2c11e97", "start_char": 0, "end_char": 1135, "text_sha256": "4a1cc3cf5135e5856a281cd391c82611caa57afa2f837b0343cf048bb2c11e97"} [acetate-p24781306] The short-chain fatty acid acetate reduces appetite via a central homeostatic mechanism. (2014). https://pubmed.ncbi.nlm.nih.gov/24781306/ DOI: 10.1038/ncomms4611
    Complete structured claim and evidence

In the sources

Preserved passages that mention this component, quoted exactly. Open one to read it in context.

    This is a research prototype built from draft material. It is not medical advice, and its statements still await verification against the original studies.

    Evidence, AI assistance and curation standards