A novel biomimetic hair-repair platform that restores the natural lipid barrier of Type 4 hair using covalently attached 18-MEA. This approach aims to provide lasting hydration and humidity resistance by rebuilding the hair surface rather than coating it, addressing the root causes of dryness and frizz.
This innovative hair-repair platform offers a biomimetic solution to restore the natural lipid barrier of Type 4 hair. By covalently attaching 18-MEA, a key fatty acid lost during chemical damage, the solution aims to recreate the hair's native hydrophobic barrier. This technology addresses the root causes of dryness and frizz, providing long-lasting moisture retention and humidity resistance by rebuilding the hair surface rather than merely coating it. The platform promises improved curl definition, reduced moisture loss, and lower fiber friction without buildup or weight.
Key features:
The current development stage is at Technology Readiness Level 3, involving the synthesis of biomimetic 18-MEA derivatives and initial testing on Type 4 hair tresses. The platform is undergoing validation to optimize attachment chemistries and performance metrics.
Drexel University is a comprehensive private research university in Philadelphia, recognized for an urban, industry‑embedded model anchored by a longstanding cooperative education program. Year‑round co‑ops create a ready talent pipeline and align sponsored research with real‑world needs. The campus sits within an innovation district with co‑located labs and incubators, enabling companies to collaborate on prototyping with faculty. Through the university’s medical college and clinical partners, industry teams can access clinical expertise and translational pathways. Research is supported by competitive federal funding from agencies such as NIH, NSF, DOE, and DoD. A dedicated technology transfer office manages IP, licensing, corporate research agreements, and startup formation.