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扇贝(Patinopecten yessoensis)精巢酶解物与κ-卡拉胶复合凝胶的分子间相互作用。

Intermolecular interaction in the hybrid gel of scallop (Patinopecten yessoensis) male gonad hydrolysates and κ-carrageenan.

机构信息

School of Food Science and Technology, Dalian Polytechnic University, Dalian, 116034, PR China.

National Engineering Research Center of Seafood, Dalian, 116034, PR China.

出版信息

J Food Sci. 2021 Mar;86(3):792-802. doi: 10.1111/1750-3841.15618. Epub 2021 Feb 10.

Abstract

Various bond disrupting agents including NaCl, GuHCl, urea, and SDS were introduced to investigate the intermolecular interactions between scallop (Patinopecten yessoensis) male gonad hydrolysates (SMGHs) and κ-carrageenan (κ-C), which were monitored by changes in rheological property, water distribution, conformation characterization and microstructure by using rheometer, low field-NMR relaxometry, Fourier transform infrared (FTIR) spectroscopy, cryo-scanning electron microscopy (cryo-SEM), and confocal laser scanning microscopy. The results showed that the bond disrupting agents deteriorated the rheological property of SMGHs/κ-C in a dose-dependent manner. Indeed, at the same concentration of 2 M, NaCl deteriorated the SMGHs/κ-C more obviously than GuHCl and urea. In addition, SMGHs/κ-C with bond disrupting agents possessed higher relaxation times including T and T , indicating the migration to free water direction of bound and free water. Moreover, the FITR results showed the red-shift in water regions (amide A and B bands), amide I and II bands, and indicated the breakdown of hydrogen bonds and electrostatic interactions, indicating a disordered structure in SMGHs/κ-C by various bond disrupting agents. Furthermore, cryo-SEM results showed the change of SMGHs/κ-C from a homogeneous network to a looser and ruptured one with larger void spaces, and indicated the disrupted and tattered microstructure of SMGHs/κ-C by various bond disrupting agents. Additionally, SMGHs/κ-C as well showed less aggregates stained by RITC by bond disrupting agents. These results suggest that electrostatic interactions would be mainly involved in the maintenance of SMGHs/κ-C gel network. This study could provide theoretical and methodological basis for hydrogel products with modified gel strength and microstructure by understanding the intermolecular interactions in gel system. PRACTICAL APPLICATION: Scallop (Patinopecten yessoensis) male gonads as a high-protein part of scallop, is usually discarded during processing despite its edibility. In recent years, scallop male gonads are regarded as good sources to develop protein matrices due to their high protein content and numerous nutrients. In this study, scallop male gonad hydrolysates (SMGHs) were obtained by trypsin-treated process. The considerable gelation behavior of SMGHs indicated that the SMGHs could be potentially utilized as a novel thickener and additive in production of kamaboko gels, can, sausage and spread with marine flavor.

摘要

各种键破坏剂,包括 NaCl、GuHCl、尿素和 SDS,被引入来研究扇贝(Patinopecten yessoensis)雄性腺水解物(SMGHs)与κ-卡拉胶(κ-C)之间的分子间相互作用,这通过流变性质、水分分布、构象特征和微观结构的变化来监测,使用流变仪、低场-NMR 弛豫度计、傅里叶变换红外(FTIR)光谱、冷冻扫描电子显微镜(cryo-SEM)和共聚焦激光扫描显微镜。结果表明,键破坏剂以剂量依赖的方式破坏 SMGHs/κ-C 的流变性质。实际上,在相同的 2 M 浓度下,NaCl 比 GuHCl 和尿素更明显地破坏 SMGHs/κ-C。此外,具有键破坏剂的 SMGHs/κ-C 具有更高的弛豫时间,包括 T 和 T ,表明结合水和自由水向自由水方向迁移。此外,FTIR 结果表明,在水区域(酰胺 A 和 B 带)、酰胺 I 和 II 带发生红移,表明氢键和静电相互作用的破坏,表明 SMGHs/κ-C 的结构无序。此外,cryo-SEM 结果表明,SMGHs/κ-C 从均匀的网络变为更疏松和破裂的网络,具有更大的空隙,表明各种键破坏剂破坏和撕裂 SMGHs/κ-C 的微观结构。此外,SMGHs/κ-C 的结合水的聚集物也较少被 RITC 染色。这些结果表明,静电相互作用将主要参与维持 SMGHs/κ-C 凝胶网络。通过了解凝胶系统中的分子间相互作用,本研究可为具有改性凝胶强度和微观结构的水凝胶产品提供理论和方法基础。

实用应用

扇贝(Patinopecten yessoensis)雄性腺作为扇贝的高蛋白部分,在加工过程中通常被丢弃,尽管它可食用。近年来,由于富含蛋白质和多种营养物质,扇贝雄性腺被认为是开发蛋白质基质的良好来源。在本研究中,通过胰蛋白酶处理过程获得了扇贝雄性腺水解物(SMGHs)。SMGHs 的相当凝胶化行为表明,SMGHs 可能潜在地用作 kamaboko 凝胶、罐头、香肠和具有海洋风味的涂抹酱的新型增稠剂和添加剂。

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