Gene expression

Biomarker1 paper1 finding

  • Animals1

Associations

1

Sleep deprivation

mixedin mice1Very low certainty

1 study
  1. Sleep deprivation is associated with gene expression in mice.

    Animalstransient sleep deprivation

    Stress and recovery dynamics reveal transcriptomic stability limits across aging mouse organs · bioRxiv · 30 Sep 2026 · Preprint

Sleep deprivation →

Latest

Nov 2025: 0Dec 2025: 0Jan 2026: 0Feb 2026: 0Mar 2026: 0Apr 2026: 0May 2026: 0Jun 2026: 0Jul 2026: 1Aug 2026: 2Sep 2026: 29Oct 2026: 1345
Clinical EpigeneticsHumans

Biological aging and heart health link to lung disease risk

A study of 181,955 UK Biobank participants linked accelerated biological aging and lower cardiovascular health to higher risks of chronic respiratory…A study of 181,955 UK Biobank participants linked accelerated biological aging and lower cardiovascular health to higher risks of chronic respiratory diseases.

Journal of Cachexia, Sarcopenia and MuscleAnimals

A 5:2 fasting regimen curbs muscle impairment in mice

Twelve cycles of a 5:2 intermittent fasting regimen improved grip strength and muscle cross-sectional area in mice fed a high-fat diet without…Twelve cycles of a 5:2 intermittent fasting regimen improved grip strength and muscle cross-sectional area in mice fed a high-fat diet without altering cumulative energy intake.

bioRxivHumansPreprint

Membrane attack complex deposits on pericytes in human eyes

Single-cell analysis of four aged human donor eyes revealed complement membrane attack complexes concentrated primarily on pericytes, smooth muscle…Single-cell analysis of four aged human donor eyes revealed complement membrane attack complexes concentrated primarily on pericytes, smooth muscle cells, and macrophages.

bioRxivCellsPreprint

Simulated microgravity raises transcriptomic age in organoids

Human neural, cardiac, and tonsil organoids exposed to 24 hours of simulated microgravity showed tissue-specific changes, including higher…Human neural, cardiac, and tonsil organoids exposed to 24 hours of simulated microgravity showed tissue-specific changes, including higher transcriptomic-age estimates in brain and heart models.