Impact of calcium ions and degree of oxidation on the structural, physicochemical, and in-vitro release properties of resveratrol-loaded oxidized gellan gum hydrogel beads

Oxidized gellan gum (OGG) hydrogel beads as delivery systems for resveratrol were fabricated by ionic cross-linking with calcium chloride (CaCl2). The degree of oxidation (DO) and CaCl2 concentration had significant influences on the formation and functional properties of hydrogel beads. The resvera...

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Veröffentlicht in:International journal of biological macromolecules 2022-01, Vol.196, p.54-62
Hauptverfasser: Wang, Peng, Luo, Zhi-gang, Xiao, Zhi-gang, Saleh, Ahmed S.M.
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Sprache:eng
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Zusammenfassung:Oxidized gellan gum (OGG) hydrogel beads as delivery systems for resveratrol were fabricated by ionic cross-linking with calcium chloride (CaCl2). The degree of oxidation (DO) and CaCl2 concentration had significant influences on the formation and functional properties of hydrogel beads. The resveratrol encapsulation efficiency (66.43%–79.84%) and loading capacity (4.15%–5.05%) of OGG hydrogel beads were enhanced as DO increased. The hydrogel beads exhibited a uniform spherical shape as observed by scanning electron microscope. Fourier transform infrared spectroscopy analysis confirmed that hydrogen bonds and ionic interaction participated in the formation of hydrogel beads. X-ray diffraction analysis revealed that the physical state of resveratrol was changed from crystalline to amorphous form after encapsulation. Furthermore, the physical stability and antioxidant capacity evaluation demonstrated that the hydrogel bead fabricated with DO80 OGG and CaCl2 concentration of 1.0 M could provide high protection for resveratrol against degradation by environmental stresses and maintain its antioxidant capacity. The DO and CaCl2 concentrations could modulate the in-vitro release behaviors of hydrogel beads and obtain a good small intestinal-targeted release of resveratrol at high DO and medium CaCl2 concentration. These findings suggested that a promising delivery system for encapsulating bioactive ingredients can be fabricated by rational design. [Display omitted] •Resveratrol (Res) was complexed with HP-β-CD to form Res/HP-β-CD inclusion complexes.•Res-loaded oxidized gellan gum hydrogel beads were prepared with CaCl2 as crosslinking agent.•DO and CaCl2 concentrations had great influence on the formation and properties of hydrogel beads.•OGG hydrogel beads showed a small intestinal-targeted release of resveratrol.
ISSN:0141-8130
1879-0003
DOI:10.1016/j.ijbiomac.2021.12.043