AgingResearch.News

Malondialdehyde

Biomarker12 papers6 findings

Various natural compounds and ALDA-1 reduce levels of the lipid peroxidation biomarker malondialdehyde across studies in mice, worms and female flies.

  • Animals7
  • Model organisms3
  • Cells2

Interventions

6

Cedrus deodara flavonoids

downin mice1

1 study
  1. Cedrus deodara flavonoids decrease malondialdehyde in mice.

    Animalsozone exposuredeep eutectic solvent extractserum14 days

    Green Extraction of Flavonoids from Cedrus deodara Pollen with Deep Eutectic Solvents and Their Potential Anti-Senescence Properties · Research Square · 29 Sep 2026 · Preprint

Cedrus deodara flavonoids →

Panax ginseng + schisandra chinensis

downin mice1

1 study
  1. Panax ginseng + schisandra chinensis decreases malondialdehyde in mice.

    Animalscompared with model miceco-decoction

    Ginseng-Schisandra ameliorates D-galactose-induced cognitive impairment in mice: Evidence from gut microbiota and metabolomic analyses · Fitoterapia · 28 Sep 2026

Panax ginseng + schisandra chinensis →

Perilla frutescens

downin worms1

1 study
  1. Perilla frutescens decrease malondialdehyde in worms.

    Model organismsethyl acetate leaf extract

    Perilla frutescens extract reduces fat accumulation and promotes longevity in Caenorhabditis elegans via modulation of the insulin/IGF-1 signaling pathway · Biogerontology · 26 Sep 2026

Perilla frutescens →

ALDA-1

downin mice1

1 study
  1. ALDA-1 decreases malondialdehyde in mice.

    AnimalsD-galactose-induced aginghippocampus

    Alda-1 Alleviates the Cognitive Deficits in D-galactose-induced Aging Mice by Regulating Oxidative Stress, Neuroinflammation, and Mitochondrial Biogenesis · The journals of gerontology. Series A, Biological sciences and medical sciences · 25 Sep 2026

ALDA-1 →

Physalis pubescens polysaccharides

downin flies1

1 study
  1. Physalis pubescens polysaccharides decrease malondialdehyde in flies.

    Model organismsselenylated fruit polysaccharide derivativefemales

    Selenylated Physalis pubescens polysaccharide extends lifespan and activates Nrf2/HO-1-mediated antioxidant defense: structural elucidation and multi-target mechanism · Bioorganic chemistry · 23 Sep 2026

Physalis pubescens polysaccharides →

Gracilariopsis lemaneiformis polysaccharides

downin worms1−73%

1 study
  1. Gracilariopsis lemaneiformis polysaccharides decrease malondialdehyde in worms (-73.4%).

    “redox homeostasis (SOD activity +19.5%, MDA content -73.4% for GP-H)”

    Model organismsin wild-type N2 wormsfermented with Lactiplantibacillus plantarum HJ-S2

    Strain-Dependent Fermentation Enhances the Bioactivity of Gracilariopsis lemaneiformis Polysaccharide-Rich Fractions · Foods (Basel, Switzerland) · 16 Sep 2026

Gracilariopsis lemaneiformis polysaccharides →

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