Low-Fume. Light-Cure. Designed for Greater Control.
Opal LED UV Lash Adhesive is a professional light-cure adhesive designed to give lash artists control over exactly when each attachment cures. When used with the Opal Light-Cure System, the adhesive remains workable during placement and cures on demand under 400 nm light for a faster, more predictable application.
A Lower-Fume Lash Environment
Opal contains approximately 60–70% cyanoacrylate—about 25% less than a typical lash adhesive formula. In laboratory testing, Opal produced approximately 300 times fewer fumes than Lash Apothecary’s Black Pearl adhesive under the same testing conditions.
The lower-fume formula helps create a more comfortable environment for artists and clients who are bothered by the fumes and odor associated with traditional lash adhesives.
Controlled Curing and Reliable Retention
Because the artist controls when each attachment cures, Opal helps reduce the unpredictability associated with conventional adhesives and changing room conditions.
- 10–12 week retention rating
- Approximately 1-second technical cure
- Recommended 2–3 second cure during application
- Remains workable until exposed to the compatible light
- Helps reduce stickies and improve placement control
- No bonder required
- No nano mister needed
Less Product Waste
Most artists use approximately one to three adhesive drops per client, helping reduce product waste without adding extra bonding products to the service.
Choose Your Viscosity
- Opal Clear: Thin viscosity with a crystal-clear finish
- Opal Violet: Medium viscosity with a violet tint
- Opal Blush: Thick viscosity with a blush-pink tint
Made in the USA
Opal is manufactured in the United States inside an FDA-registered facility with a clean, pressurized laboratory environment designed to support consistent production and quality.
Important
Opal contains cyanoacrylate and is not acrylate-free or allergy-proof. Individual sensitivities, irritation, and allergic reactions are still possible. Always follow the Opal application, curing, and client-screening protocols.