Complex characterization and formation mechanism of scallop (Patinopecten yessoensis) protein hydrolysates/κ‐carrageenan/konjac gum composite gels

扇贝 虾夷盘扇贝 水解物 化学 卡拉胶 多糖 复合数 疏水效应 氢键 食品科学 化学工程 水解 材料科学 有机化学 渔业 分子 生物 复合材料 工程类
作者
Jia‐Nan Yan,Xiao‐Fan Cui,Xinyu Jiang,Lin Li,Wen Sun,Hai‐Tao Wu
出处
期刊:Journal of Food Science [Wiley]
卷期号:87 (7): 2953-2964 被引量:9
标识
DOI:10.1111/1750-3841.16163
摘要

The combination of κ-Carrageenan (KC) and konjac gum (KGM) were introduced to examine the impact on gelation and microstructural behaviors of scallop male gonads hydrolysates (SMGHs) and the involvement of intermolecular forces. In terms of G' response of SMGHs/KGM/KC, it obviously enhanced by 3.6- and 108.5-fold than controls of KGM/KC and SMGHs/KC at 0.1 Hz, accompanying increasing melting temperatures from 27.9 (KGM/KC) and 30.0 (SMGHs/KC) to 33.7°C (SMGHs/KGM/KC), respectively. Additionally, SMGHs/KGM/KC with decreasing relaxation time T23 and blue shift of hydroxyl group than controls suggested higher water retention capacity and ordered conformation. Moreover, SMGHs/KGM/KC formed compact networks with thick walls as reflected by cryo-SEM and showed rougher surface with more aggregation as reflected by AFM. Furthermore, electrostatic in couple with hydrophobic interactions were dominant interactions, while hydrogen bonds were involved in subordinately in SMGHs/KGM/KC. PRACTICAL APPLICATION: Scallop (Patinopecten yessoensis) male gonads are always discarded during processing despite high-protein content and edibility. In the current research, scallop male gonad hydrolysates (SMGHs) exhibited gelation behavior, which have a potential role in developing marine source protein as a functional food base such as kamaboko gels, can, sausage and spread and even delivery vehicles for bioactive compounds.
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