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Updated: May 4, 2026

Author Spotlight: Development and Characterization of Eco-Friendly Lignin-Based Microparticles for Enhanced Delivery of Bioflavonoids
Published on: March 1, 2024
Structural and physicochemical characterization of maltodextrin (starch-derived polysaccharide) microcapsules loaded
Marcos Antonio Matiucci1, Vitor Costa Dalagna2, Natallya Marques da Silva1
1State University of Maringa, Postgraduate Program in Food Science, 87020-900, Maringa, Parana, Brazil.
Abstract:
Phenolic compounds are highly susceptible to degradation during processing and storage, which limits their application in food systems. However, the role of extraction-derived composition in governing encapsulation performance and stability remains poorly understood. This study investigated how phenolic composition obtained through percolation influences the structural, physicochemical, and thermal properties of maltodextrin-based microcapsules produced by spray drying. High encapsulation efficiency (87%) was achieved; however, compound-dependent losses were observed, including reductions of 43.73% for chlorogenic acid and 52.09% for quercetin under specific storage conditions. Encapsulation improved the retention of volatile compounds and enhanced thermal stability, shifting degradation events to higher temperatures. FTIR analysis revealed intermolecular interactions between phenolic compounds and the carbohydrate matrix, while SEM confirmed the formation of spherical particles typical of spray-dried systems. XRD and thermal analyses indicated predominantly amorphous structures associated with reduced molecular mobility. These results demonstrate that compound retention is governed by molecular structure and matrix interactions rather than apparent antioxidant activity. Overall, this study provides mechanistic insights into structure-mobility-stability relationships and supports the rational design of carbohydrate-based delivery systems for improved bioactive stability.
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