The Ordinary Multi-Peptide Serum for Hair Density for Thicker Hair
The Ordinary
$24.00
Product Insights & Style Tips
The Ordinary Multi-Peptide Serum for Hair Density slides into your routine with quiet confidence. A lightweight, leave-in formula, it promises thicker, denser-looking hair without weighing strands down. The blend leans into peptide technologies alongside a cast of plant-based extracts, delivering a clean, modern efficacy that reads clinical but wearable.
Massage a few drops into clean, dry scalp once daily, ideally at bedtime. The serum is paraben-free, phthalate-free, sulfate-free, silicone-free, fragrance-free, and oil-free, so it layers easily with existing routines and won’t weigh hair down. With a 2 oz bottle, it fits into a nighttime ritual or travel bag, and the leave-in format means your hair holds its shape as you move from day to night.
Brand's clinical-minimalist skincare language meets hair care; The Ordinary's approach is efficiency-first; the peptide-and-plant mix signals the current wave of density-focused hair serums. It threads through everyday styling, pairing with the rest of a low-effort hair routine.
Materials / Fabrication
- Concentrated leave-in formula designed to support the scalp and give thicker, denser, fuller-looking hair
- Lightweight texture for daily use
- Contains peptide technologies alongside plant-based extracts
- Key actives: REDENSYL, Procapil, CAPIXYL, BAICAPIL, AnaGain, and High-Solubility Caffeine
- 2 oz size
- Paraben-free; phthalate-free; sulfate-free; silicone-free; fragrance-free; oil-free
- Made in Canada
- Usage: massage a few drops thoroughly into clean, dry scalp once daily, ideally at bedtime
- Storage: room temperature 59F to 86F
- Opened shelf life: 12 months
- Keep out of reach of children
- Trademark notes: includes listed trademarks; ownership belongs to respective owners
Recommended Care
- Leave-in formula; do not rinse after application
- If irritation occurs, rinse off and discontinue use; consult a physician
- Store at room temperature away from heat and direct sunlight
