A sustainable encapsulation technology using β-cyclodextrin to stabilize anthocyanins extracted from fruit pomace, enabling their use as natural red colorants in beverages. The approach protects color integrity during storage and thermal processing, offering a clean-label alternative to synthetic dyes with added functional and potential antimicrobial benefits.
This solution delivers a sustainable method for producing stable, natural red pigments from fruit pomace using β-cyclodextrin encapsulation. Anthocyanins are water-soluble plant pigments responsible for red and purple-blue colors, and they offer a promising natural alternative to synthetic food colorants while providing potential health and functional benefits. The technology addresses a key industry challenge: anthocyanins are naturally unstable and lose color during processing and storage. By using β-cyclodextrin as both an extraction and stabilization medium, the process protects pigment integrity and enables practical application in beverages and other food systems.
The approach supports clean-label product development, valorizes agricultural by-products such as fruit pomace, and aligns with growing consumer demand for natural ingredients. In addition to color, the encapsulated extracts retain bioactive compounds that may contribute antimicrobial properties and sensory masking benefits in finished beverages.
Extraction process:
Stabilization mechanism:
Analytical validation:
Additional functional properties:
The technology has been validated at the laboratory scale, with demonstrated extraction, stabilization, and application in food model systems. Future validation will focus on scaling the extraction process, developing a dried extract form using a novel solvent, verifying color retention under pasteurization and storage, evaluating antimicrobial activity, and confirming sensory acceptability in finished beverages. The current stage represents proof-of-concept with a clear pathway toward pilot-scale production and commercial application in the food and beverage industry.
Aristotle University of Thessaloniki is a comprehensive public university and one of the largest in Greece, combining scale with a strong research mission. Industry engages through co-located engineering and medical campuses, shared labs and prototyping facilities, and clinical access enabled by affiliated university hospitals. The university is embedded in Thessaloniki’s innovation ecosystem, collaborating with nearby national research centers and technology parks and benefiting from logistics links through the port to Southeast Europe. Research is supported by competitive European and national programs, including Horizon Europe. A dedicated technology transfer office provides IP support, licensing pathways, and startup services for corporate collaboration.