Skip to content
Open access

Influence of Gum Arabic and Maltodextrin on the Performance of Biopolymer Microencapsulation for Tithonia diversifolia Extract: Efficiency and Release Kinetics

Jul 2026 · Indonesian Journal of Chemistry · 0 citations · 65 references

Abstract

Sustainable biopolymer-based carriers are increasingly utilized to protect phytochemicals and control their release. This study compares gum Arabic (GA) and maltodextrin (MD) as wall materials for spray-dried microencapsulation of Tithonia diversifolia leaf extract. Optimal conditions differed for each polymer: GA microcapsules at 4% w/v (90 min stirring time at pH 5) with %EE 80.3% and MD microcapsules at 0.8% w/v (90 min stirring time at pH 5) with %EE 73.9%. This efficiency was mirrored in antioxidant retention, where GA microcapsules exhibited a lower DPPH IC50 value (117.4 µg/mL) compared to MD (138.1 µg/mL). In vitro release tests demonstrated distinct pH-responsive kinetics, GA showed higher cumulative release in both simulated gastric (43%) and intestinal (96%) compared to MD in simulated gastric (30%) and intestinal (80%). SEM analysis revealed oval, slightly corrugated GA microcapsules, whereas MD microcapsules displayed semi-spherical morphologies with surface fissures. FTIR spectra confirmed stronger matrix-core interactions in GA microcapsules than in MD. These findings demonstrate that biopolymer wall material selection critically influences encapsulation efficiency, antioxidant stability, and pH-responsive release behavior. GA microcapsules is identified as the more effective and pH-responsive matrix for developing functional food or phytopharmaceutical delivery systems.

Read PDF

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.