- REDNESS, SENSITIVE + INFLAMMATION
- >
- Young Goose | L.A.D.R. Red Light-Activated Antioxidant Serum
Young Goose | L.A.D.R. Red Light-Activated Antioxidant Serum
The first serum designed to amplify red and near-infrared (NIR) light therapy, enhancing DNA repair and rejuvenation.
Amplified DNA Repair • Enhanced Cellular Energy • Radiant Resilience
What it Targets:
80%
Hydration
90%
Pigmentation
90%
Firmness
85%
Wrinkles
90%
Dullness
100%
Resilience
Turn back time on UV damage
Amplified DNA repair
Light-activated enzymes reverse UV-induced DNA damage at a molecular level.
Enhanced cellular energy
Boosts mitochondrial function, supporting repair and renewal for radiant, resilient skin.
Radiant resilience
Promotes elasticity, reduces fine lines, and restores skin vitality.
WHO IT’S FOR
groundbreaking ingredients for transformative results
GOOD FOR
Perfect for those using red/NIR light therapy or seeking advanced skin repair.
Texture
A lightweight, refreshing serum that absorbs quickly into the skin.
dna repair photosomes
Marine-derived enzymes (photolyases) use red light to repair UV-induced DNA damage, reducing aging and pigmentation while enhancing cellular renewal.
nad+ apex™ complex
spiruline ap™
celvio™ spermidine
pro-collagen peptides
ergothioneine
how to use:
prepare
Cleanse your skin and apply a thin layer of L.A.D.R. Serum to activate with red light therapy
during therapy
Use your red light device as directed by the manufacturer to enhance the serum's DNA repair and skin renewal.
post-therapy
Maximize your routine by applying Youth Daily or a moisturizer of your choice for deep, lasting skin rejuvenation. Finish with SPF to protect your revitalized skin.
What makes L.A.D.R. Serum different from other serums?
L.A.D.R. Serum is light-activated, meaning it works synergistically with red light therapy (RLT) and natural sunlight to enhance DNA repair, cellular energy, and collagen production. It combines cutting-edge ingredients like NAD+ APEX, DNA Repair Photosomes, and Spiruline AP to optimize skin renewal at a molecular level.