Innovative oleogels using commodity oils and plant-based structuring agents offer a sustainable, scalable solution for replacing saturated fats in bakery products. By optimizing interactions between proteins, polysaccharides, and oleogelators, these oleogels enhance texture and stability.
This research focuses on developing oleogels structured from commodity oils such as olive, canola, and flaxseed. By utilizing plant proteins and polysaccharides, this solution aims to replace saturated fats in food products, particularly in the bakery sector. The innovation lies in controlling the texture and stability of these oleogels through pH modulation and the use of Hofmeister ions, coupled with covalent bonding techniques. This method not only enhances sensory attributes but also improves oxidative stability, providing a healthier alternative to traditional fats.
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Currently at TRL 3, this technology is in the early stages of development and has undergone initial proof-of-concept validations. Further optimization and prototyping are planned to advance the technology toward commercial readiness.
Texas A&M University in College Station is a comprehensive public research university and the flagship of The Texas A&M University System, combining broad academic strengths with a strong applied‑research culture. Industry collaborates on the Texas A&M‑RELLIS campus—an integrated education, research and testing environment that supports large‑scale experimentation and proving grounds—and through the Texas A&M Transportation Institute’s facilities in Bryan‑College Station. A statewide extension network connects university expertise to companies and communities across all Texas counties, enabling rapid piloting and deployment. Research is supported by competitive federal funding from agencies such as NSF, NIH, DOE, USDA and DoD, alongside state and industry sponsorship. Texas A&M Innovation provides IP management, licensing and commercialization pathways across the system.