This technology utilizes cellulose nanocrystals (CNC) to create systems for controlled fragrance release, including CNC-stabilized emulsions, spray-dried powders, and core-shell filaments. These systems enhance fragrance stability and release, using sustainable, scalable methods.
This innovative platform leverages cellulose nanocrystals (CNC) to develop advanced systems for the controlled release of fragrances and essential oils. The technology comprises CNC-stabilized emulsions, spray-dried oil powders, and core-shell filaments, offering versatile options for incorporating fragrances into topical formulations. These systems are designed to improve fragrance stability, retention, and controlled release, utilizing naturally derived materials that are petrolatum-free and suitable for scalable manufacturing.
Currently at TRL 4, this technology has demonstrated efficacy in laboratory settings, with established CNC-based formulations showing high oil encapsulation and stability. Future development will focus on optimizing fragrance loading and processing into spray-dried powders and wet-spun filaments, with planned evaluations in topical formulations for commercial applications.
UBC is a comprehensive public research university with major campuses in Vancouver and the Okanagan, among Canada’s largest and most internationally connected. Industry engages through a co-op talent pipeline and collaborative research spaces that include co-located clinical settings and on‑campus testbeds. A dedicated technology transfer office brokers partnerships, manages IP and licensing, and is complemented by an active venture accelerator and incubator network. Research is supported by competitive funding from Canada’s Tri‑Council agencies (NSERC, CIHR, SSHRC) and infrastructure investments from the Canada Foundation for Innovation, alongside provincial and industry sponsorship.