Component

Rat cardiomyocyte glycolysis-associated extracellular acidification

Study-specific entity. Experimental conditions and evidence limits remain on each linked claim.

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

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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

What acts on it

  1. Dlat-overexpressing rat cardiomyocytes showed greater glycolysis-associated extracellular acidification.

    Experimental context and source evidence
    access_level
    full_text_and_supplement_review
    compartment
    Mitochondria or cell lysate, depending on assay
    dose
    Adenovirus MOI 50:1 where applicable; compound concentrations not specified in reviewed methods
    duration
    Adenovirus incubation 6–8 h; subsequent endpoint timing not consistently specified
    endpoint
    rat-cardiomyocyte-glycolytic-acidification
    evidence_location
    Seahorse ECAR; Figure 3P–R
    experimental_model
    Adenoviral/cell perturbation study
    exposure
    rat-dlat-overexpression
    limitations
    Single primary study; not independently replicated here. Cardiac and recombinant findings do not establish pulmonary endothelial, viral-sepsis or ARDS effects. ECAR is an assay readout, not a direct measure of PDH flux. The molecular cause remains unresolved.
    organism
    Rattus norvegicus host cells; construct species may be unspecified
    plain_language
    Dlat-overexpressing rat cardiomyocytes showed greater glycolysis-associated extracellular acidification.
    primary_locator
    [{"cache": "artifacts/dlat-curation/heart-blocks.json", "block_index": 30, "text_sha256": "c2e9b88e22dc6b77f227fe9d4192d471b12452fe1e59280543fcc219fed2414f", "xml_element_id": null}, {"cache": "artifacts/dlat-curation/heart-blocks.json", "block_index": 32, "text_sha256": "ea1ec18a5210aa68822ce1416ae850de5ce871e100938a13a2c1dcc49c444731", "xml_element_id": "Par14"}, {"cache": "artifacts/dlat-curation/heart-blocks.json", "block_index": 90, "text_sha256": "9acf1ca568eece887ec72ad83ba8e593471afa5810e005762d0d3cbcfd80e700", "xml_element_id": "Par40"}]
    primary_references
    https://doi.org/10.1038/s41467-026-70703-w
    tissue_or_cell_type
    Neonatal rat ventricular cardiomyocytes (NRVCMs)

    DLAT: cardiac fatty-acid oxidation and mitochondrial glutathione evidence · lines 250–264

    AI-assisted two-paper curation, 2026-09-20. Cardiac full-text/supplement review; CRC abstract only. No pulmonary endothelial validation. · supports · Adenoviral/cell perturbation study · source_derived_draft · unverified_draft

    Dlat-overexpressing rat cardiomyocytes showed greater glycolysis-associated extracellular acidification. organism: Rattus norvegicus host cells; construct species may be unspecified tissue_or_cell_type: Neonatal rat ventricular cardiomyocytes (NRVCMs) experimental_model: Adenoviral/cell perturbation study compartment: Mitochondria or cell lysate, depending on assay dose: Adenovirus MOI 50:1 where applicable; compound concentrations not specified in reviewed methods duration: Adenovirus incubation 6–8 h; subsequent endpoint timing not consistently specified primary_references: https://doi.org/10.1038/s41467-026-70703-w access_level: full_text_and_supplement_review evidence_location: Seahorse ECAR; Figure 3P–R endpoint: rat-cardiomyocyte-glycolytic-acidification exposure: rat-dlat-overexpression limitations: Single primary study; not independently replicated here. Cardiac and recombinant findings do not establish pulmonary endothelial, viral-sepsis or ARDS effects. ECAR is an assay readout, not a direct measure of PDH flux. The molecular cause remains unresolved. primary_locator: [{"cache": "artifacts/dlat-curation/heart-blocks.json", "block_index": 30, "text_sha256": "c2e9b88e22dc6b77f227fe9d4192d471b12452fe1e59280543fcc219fed2414f", "xml_element_id": null}, {"cache": "artifacts/dlat-curation/heart-blocks.json", "block_index": 32, "text_sha256": "ea1ec18a5210aa68822ce1416ae850de5ce871e100938a13a2c1dcc49c444731", "xml_element_id": "Par14"}, {"cache": "artifacts/dlat-curation/heart-blocks.json", "block_index": 90, "text_sha256": "9acf1ca568eece887ec72ad83ba8e593471afa5810e005762d0d3cbcfd80e700", "xml_element_id": "Par40"}] plain_language: Dlat-overexpressing rat cardiomyocytes showed greater glycolysis-associated extracellular acidification.
    Complete structured claim and evidence

In the sources

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

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