Glucose uptake

Biomarker1 paper3 findings

  • Animals1

Interventions

1

Tissue injury

upin A. mexicanum1Very low certainty

1 study
  1. Tissue injury increases glucose uptake in A. mexicanum.

    “Glucose uptake was elevated in regenerating tails compared to uninjured tails.”

    Animalsduring early regeneration

    Injury size regulates glucose allocation locally and systemically during vertebrate tissue regeneration · bioRxiv · 1 Sep 2026 · Preprint

Tissue injury →

Upstream

1

Injury size

upin A. mexicanum1

1 study
  1. Injury size increases glucose uptake in A. mexicanum.

    “larger injuries induced higher glucose uptake than smaller injuries”

    Animalsduring early regeneration

    Injury size regulates glucose allocation locally and systemically during vertebrate tissue regeneration · bioRxiv · 1 Sep 2026 · Preprint

Associations

1

Regenerative outgrowth

upin A. mexicanum1

1 study
  1. Glucose uptake is associated with regenerative outgrowth in A. mexicanum.

    “correlating with faster regenerative outgrowth”

    Animalsduring early regeneration

    Injury size regulates glucose allocation locally and systemically during vertebrate tissue regeneration · bioRxiv · 1 Sep 2026 · Preprint

Latest

Nov 2025: 0Dec 2025: 2Jan 2026: 1Feb 2026: 0Mar 2026: 0Apr 2026: 0May 2026: 0Jun 2026: 2Jul 2026: 0Aug 2026: 1Sep 2026: 4Oct 2026: 111
bioRxivModel organismsPreprint

Restoring Tyr1R signaling aids motor function in flies

Overexpressing the receptor in adrenergic-like neurons prolonged lifespan, restored calcium signaling, and improved locomotor performance in aged…Overexpressing the receptor in adrenergic-like neurons prolonged lifespan, restored calcium signaling, and improved locomotor performance in aged fruit flies.

Nature AgingAnimals

Cardiolipin decline drives muscle fiber shifts in mice

Deleting cardiolipin synthase in young mice induced age-like fiber shifts, while restoring its expression reversed atrophy and rescued premature…Deleting cardiolipin synthase in young mice induced age-like fiber shifts, while restoring its expression reversed atrophy and rescued premature mortality.