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Enhanced stability and controlled release of mandarin peel bioactives formulation for sustainable nutrition and next generation food system.

Sep 2026 · Preparative Biochemistry & Biotechnology · pp. 1-16 · 0 citations · 31 references
Medicine

Abstract

This study explored the microencapsulation of mandarin (Citrus reticulata) peel extract using ionic gelation and freeze-drying to improve the stability and bioavailability of citrus bioactives. Encapsulation involved sodium alginate, maltodextrin (MD), gum arabic (GA), and Aloe vera gel powder (0.3%), with a 20:80 core-to-wall ratio. Different formulations with varying MD and GA concentrations (total 2%) were tested for their effects on encapsulation efficiency, physicochemical properties, release behavior, and storage stability. Ionic gelation produced calcium-alginate beads with good biocompatibility but lower encapsulation efficiency; IG4 (1.5% MD, 0.5% GA) showed the best results in this group. Freeze-drying with ultrasonic homogenization significantly improved encapsulation efficiency, polyphenol retention, and antioxidant activity, with FD4 showing preferred formulation. Release studies revealed a biphasic, pH-dependent release profile, and MD-GA blends enabled controlled release, especially in FD4. Simulated gastrointestinal conditions showed higher release in the gastric phase, while FD4 and FD5 provided better protection and bioavailability. Storage stability followed first-order kinetics, with FD4 exhibiting the highest stability and longest shelf life. Overall, freeze-drying was more effective, thereby supporting the valorization of citrus waste to develop functional, antioxidant-rich food ingredients.

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