Phosphatidylethanolamine

Biomarker2 papers2 findings

  • Humans1
  • Model organisms1

Upstream

1

psd-1

downin worms1−70%

1 study
  1. psd-1 decreases phosphatidylethanolamine in worms (-69.51%).

    “mitochondrial PE levels were reduced by 69.51% in psd-1 knockdown worms compared to controls”

    Model organismscompared to controls

    Suppressing clk-1 restores lifespan and mitochondrial function in psd-1 deficient worms · Antioxidants (Basel, Switzerland) · 20 Sep 2026

psd-1 →

Associations

1

Pancreatic cancer

upin silico1

1 study
  1. Phosphatidylethanolamine is associated with pancreatic cancer in silico.

    “the level of plasma phosphatidylethanolamine (18:0_20:4) was causally linked with pancreatic cancer”

    In silicoin forward Mendelian randomization analysisplasma

    Unveiling the association between plasma lipid species and pan-cancers: A bidirectional 2-sample Mendelian randomization study · Medicine · 1 Sep 2026

Pancreatic cancer →

Latest

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Alzheimer's & DementiaHumans

HDL particle sizes show contrasting links to dementia risk

In 23,790 older adults, higher small HDL levels tracked lower dementia risk (hazard ratios 0.89 to 0.91), while very large HDL tracked higher risk…In 23,790 older adults, higher small HDL levels tracked lower dementia risk (hazard ratios 0.89 to 0.91), while very large HDL tracked higher risk (1.10 to 1.14).

JCI InsightAnimals

Mild caloric restriction accelerates atherosclerosis in mice

In ApoE-deficient mice fed for six months, mild food restriction reduced weight gain by 5% but increased circulating cholesterol and accelerated…In ApoE-deficient mice fed for six months, mild food restriction reduced weight gain by 5% but increased circulating cholesterol and accelerated plaque formation.

AntioxidantsModel organisms

Suppressing clk-1 restores lifespan and mitochondrial function in psd-1 deficient worms

Targeting ubiquinone biosynthesis counteracted reduced oxygen consumption and rescued lifespan loss caused by mitochondrial phosphatidylethanolamine…Targeting ubiquinone biosynthesis counteracted reduced oxygen consumption and rescued lifespan loss caused by mitochondrial phosphatidylethanolamine deficiency in Caenorhabditis elegans.