Over two years, VibroZyme made excellent progress in demonstrating the feasibility of vibration-powered enzymatic catalysis.
New composite materials were designed, prepared, and tested, using piezoelectric ceramics embedded in advanced polymer matrices. These materials were successfully shown to generate redox activity under mechanical stimulation.
Proof of concept assays demonstrated that this activity can be harnessed to regenerate cofactors such as NADH, which are essential for many enzymes.
Enzyme compatibility studies were performed, establishing validated protocols and clear design rules for coupling enzymes to these composites.
Industrial alignment was achieved through collaboration with a major enzyme company, ensuring the research addressed real-world challenges and opportunities.
Training and capacity building were fully achieved, equipping the researcher with new skills in enzyme technology, materials science, intellectual property, and commercialisation.
The most important achievement is the preparation of a patent application, which protects the core technology and paves the way for industrial exploitation. A companion scientific manuscript is drafted and will be submitted immediately after the patent is filed. Together, these outcomes establish a strong platform for follow-on research and commercialisation.