PRO-COLLAGEN ANTI-AGING ROSEMARY VANILLA CREAM MASK
PRO-COLLAGEN ANTI-AGING ROSEMARY VANILLA CREAM MASK
BIOMAX USA® Pro-Collagen Anti-Aging Cream Mask – Rosemary Vanilla
Product Profile
Luxurious anti-aging mask—hydrates, softens, and rejuvenates.
Scent Signature
Fresh herbal rosemary blended with warm creamy vanilla—balanced, soothing, and elegant.
Product Description
Relax and rejuvenate the skin with BIOMAX USA® Pro-Collagen Anti-Aging Cream Mask – Rosemary Vanilla, a professional-grade treatment designed to deeply hydrate, nourish, and revitalize dry, tired skin. Infused with collagen and moisturizing ingredients, this luxurious cream mask helps improve softness while promoting a smoother, healthier-looking appearance.
The calming blend of aromatic rosemary and comforting vanilla transforms every manicure and pedicure service into a soothing spa ritual. Perfect for salons and spa environments, it delivers rich hydration while balancing freshness and warmth for a truly relaxing sensory experience.
Key Benefits
- Anti-Aging Hydration — Helps improve softness and smooth appearance
- Collagen Infused — Promotes healthier-looking, rejuvenated skin
- Deep Nourishment — Helps condition and revitalize dry skin
- Herbal Comfort Aroma — Rosemary refreshes while vanilla soothes
- Professional Use — Ideal for manicure and pedicure services
Applications
- Hand and foot anti-aging treatments
- Professional manicure and pedicure services
- Dry skin conditioning treatment
- Spa moisturizing ritual
Key Ingredients
Water (Aqua), Kaolin, Collagen, Glycerin, Aloe Vera Extract, Vitamin E, Fragrance (Rosemary Vanilla), Botanical Extracts.
Directions for Use
Apply generous amount to hands, feet, or desired area.
Leave on for 10–15 minutes.
For enhanced results, wrap with warm towel.
Rinse thoroughly or remove with warm towel.
Proceed with massage or finishing treatment.
Safety & Storage
For external use only.
Avoid contact with eyes.
Discontinue use if irritation occurs.
Keep out of reach of children.
Store in a cool, dry place away from direct sunlight.