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The Synthesis of RGD-functionalized Hydrogels as a Tool for Therapeutic Applications
Published on: October 7, 2016
Gelation mechanism of Antrodia cinnamomea polysaccharide-polymerized whey protein hydrogel and its application in
Jiping Fan1, Huiyu Xiang1, Jiafu Wu1
1Key Laboratory of Dairy Science, College of Food Science, Northeast Agricultural University, Harbin, Heilongjiang 150030, China.
Abstract:
The study developed a novel heat-induced composite hydrogel (10% PWP + 0-6% ACP) by integrating polymerized whey protein (PWP, 10% w/v) with Antrodia cinnamomea polysaccharide (ACP, 0-6% w/v) as a texture modifier for set-type yogurt, and to elucidate its gelation mechanism. ACP incorporation progressively increased particle size (53.34-113.30 nm), shortened gelation time (1263.0-822.5 s). Simultaneous rheology-fourier transform infrared spectroscopy, two-dimensional correlation spectroscopy, and molecular docking collectively revealed that hydrogen bonding dominated network formation. The amide I band shifted within 1625-1631 cm-1, confirming ACP-induced conformational changes in the protein backbone. Molecular docking demonstrated that 1,3-β-D-glucan was bound stably to α-lactalbumin (-6.2 kcal/mol) and β-lactoglobulin (-5.7 kcal/mol) through hydrogen-bonding networks. When applied to yogurt at 2% (w/v), the hydrogel improved water-holding capacity (34.60%), increased hardness (3.58%), and enhanced richness perception while reducing bitterness. The findings provides theoretical and technical support for utilizing PWP-ACP hydrogels as functional texture modifiers in yogurt.

