Temperature-dependent modulation of structural characteristics and α-glucosidase inhibitory activity of corn bran
Zimeng Wang1, Mingcong Fan1, Yan Li1
1School of Food Science and Technology, State Key Laboratory of Food Science and Technology, National Engineering Research Center for Functional Food, Jiangnan University, 1800 Lihu Avenue, Wuxi, 214122, China.
Abstract:
Corn bran polysaccharide (CBP) was extracted by water extraction followed by ethanol precipitation. Methylation analysis indicated that CBP mainly contained terminal Araf-(1→, →3,4)-Xylp-(1→, and →4)-Xylp-(1 → residues, together with minor →4,6)-Glcp-(1→, →3)-Galp-(1→, and Galp-(1 → residues. A non-covalent CBP-quercetin (CBP-QC) complex was prepared by thermal induction, and its structural characteristics and α-glucosidase inhibitory activity were systematically investigated. Among the tested temperatures, complexation at 65 °C resulted in the higher quercetin-binding capacity and stronger α-glucosidase inhibitory activity. FT-IR analysis revealed a shift of the OH stretching band around 3300 cm-1, while XRD showed a decrease in the characteristic diffraction peak at 2θ = 19°, supporting an association between CBP and QC. CBP-QC exhibited reversible mixed-type inhibition against α-glucosidase, with fluorescence analysis suggesting predominantly static quenching. Thermodynamic parameters indicated a spontaneous interaction, with hydrogen bonding potentially contributing to the binding process. Furthermore, the CBP-QC complex improved glucose metabolism in IR-HepG2 cells. These findings showed that thermal treatment modulated the structural characteristics and α-glucosidase inhibitory activity of CBP-QC, providing preliminary insights into its potential as a natural functional food ingredient.
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