This innovative process uses soybean wet gums as a feedstock to produce high-value mycoprotein through a controlled fermentation process. It leverages a filamentous fungus to convert complex components into alternative protein sources for food and feed.
The bioconversion process utilizes soybean wet gums, a co-product of soybean oil refining, as a feedstock to produce mycoprotein through controlled fermentation. This approach employs a filamentous fungus capable of metabolizing complex substrates, such as sugars and emulsified lipids, into mycelial biomass. The resulting mycoprotein offers a sustainable and scalable alternative to conventional animal-derived proteins, addressing global protein demand and sustainability challenges. The process allows for direct slurry integration, enhancing the economic viability of mycoprotein production by reducing reliance on costly synthetic media components.
The technology is at TRL 3, indicating that active research and development are underway with laboratory-scale proof of concept successfully demonstrated. The process is progressing through various phases of optimization and validation, with plans for pilot-scale testing and commercialization over the next 15 months.
The University of Arkansas in Fayetteville is a comprehensive public research university and the flagship of the state system, pairing broad academic breadth with an applied, partnership‑oriented research culture. Industry engages through a research and technology park that co‑locates labs, startups, and corporate tenants, with shared instrumentation and prototyping resources. Experiential pipelines—co‑ops and internships across engineering and business—connect companies with talent year‑round, and proximity to multiple Fortune 500 headquarters supports rapid piloting and scale‑up. Research is supported by competitive federal funding from agencies such as NSF, NIH, DOE, USDA, and DoD, and a dedicated technology transfer office streamlines IP, licensing, startups, and corporate‑sponsored research.