首页> 外文OA文献 >Ultrastructural and rheological changes during the gelation of giant squid (Dosidicus gigas) muscle
【2h】

Ultrastructural and rheological changes during the gelation of giant squid (Dosidicus gigas) muscle

机译:巨型鱿鱼(Dosidicus gigas)肌肉凝胶化过程中的超微结构和流变学变化

摘要

The giant squid or dosidicus (Dosidicus gigas) is normally shipped frozen from the coasts of America. During the period prior to freezing-when conditions are not always optimum-and during frozen storage, the functional capacity of the muscle proteins declines, rendering the material useless for certain processes such as conversion to gel. This paper examines the reasons for the lack of a good gel-forming capacity as measured both rheologically (breaking force, breaking deformation and gel strength) and in terms of ultrastructure (scanning microscopy). The study was carried out at four different temperatures known to be critical for fish muscle protein gel formation, and at two salt concentrations. At 35°C the structure was spongier in gels made with 1.5% NaCl, although a true gel was still not formed, as shown by rheological measurements. Above 30°C, the ultrastructure became more cellular, particularly in samples made with 2.5% NaCl, at which concentration gel strength values were higher. However, at neither salt concentration nor at any of the experimental temperatures was the mesh as spongy as in other fish gels reported in the literature. The values of rheological analysis and folding test were correspondingly low. © Springer-Verlag 1996.
机译:巨型鱿鱼或dosidicus gigas(Dosidicus gigas)通常是从美国海岸冷冻运输的。在冷冻之前,条件并不总是最理想的时期,以及在冷冻储存期间,肌肉蛋白质的功能能力下降,从而使得该材料无法用于某些过程,例如转化为凝胶。本文从流变学(断裂力,断裂变形和凝胶强度)和超微结构(扫描显微镜)的角度,研究了缺乏良好凝胶形成能力的原因。该研究是在四个对鱼肌肉蛋白质凝胶形成至关重要的不同温度下进行的,并在两个盐浓度下进行。如流变学测量所示,在35°C下,用1.5%NaCl制成的凝胶的结构更加海绵状,尽管仍未形成真正的凝胶。高于30°C时,超微结构变得更加多孔,特别是在使用2.5%NaCl制成的样品中,其浓度下凝胶强度值更高。然而,无论是在盐浓度还是在任何实验温度下,网孔都没有文献报道的其他鱼胶那样的海绵状。流变分析和折叠试验的值相应较低。 ©Springer-Verlag 1996。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号