摘要
依次利用胶体磨细粉碎(简称细粉碎)和湿法超微粉碎(简称超微粉碎)逐级粉碎方式制备鱼骨泥,提取不同工艺阶段骨泥中的肌原纤维蛋白,以肌原纤维蛋白溶解度、粒度、浊度、活性巯基含量、表面疏水性和相对二级结构含量等为指标,研究鱼骨泥加工过程中肌原纤维蛋白结构性质的变化。结果显示:不同阶段加工工艺对鱼骨泥中肌原纤维蛋白结构性质影响显著,其中超微粉碎对骨泥中肌原纤维蛋白结构性质影响较大,细粉碎对蛋白结构性质影响相对较小。逐级粉碎可以显著提高鱼骨泥中肌原纤维蛋白的溶解度;在胶体磨剪切力作用下,肌原纤维蛋白粒径显著减小,而经超微粉碎后,由于蛋白质结构的破坏和聚集作用,肌原纤维蛋白粒径会显著增加,由299.4 nm增至464.5 nm,同时浊度也随之升高;细粉碎后活性巯基含量和表面疏水性均显著下降,但随着超微粉碎次数增加,活性巯基含量和表面疏水性均呈现先升高后下降的趋势;细粉碎使肌原纤维蛋白α-螺旋结构比例由64.21%增加到79.99%、β结构比例下降,而超微粉碎可破坏α-螺旋结构,使其部分转变成β结构。
Superfine fish bone paste was prepared by sequentially using colloid mill grinding and wet superfine grinding.Myofibrillarlar proteins from fish bone paste were extracted to investigate the changes in structural properties during the processing of bone paste through the determination of solubility,particle size,turbidity,active sulfhydryl content,surface hydrophobicity,and secondary structures.The results showed that processing methods significantly affected myofibrillar proteins in fish bone paste,and wet superfine grinding showed a bigger impact on structural properties of myofibrillar proteins than colloid mill grinding.The solubility of myofibrillar proteins was enhanced after sequential grinding.The particle size reduced under the shear stress of colloid mill grinding,and then increased obviously from299.4to464.5nm after wet superfine grinding,accompanied with an increase in turbidity.The active sulfhydryl content and surface hydrophobicity were decreased after colloid mill grinding,but both of them firstly rosed then declined with the increase of wet superfine grinding time.The proportion ofα-spiral in secondary structure increased from64.21%to79.99%,whileβstructure proportion decreased after colloid mill grinding,and wet superfine grinding could degrade part of theα-spiral structure and turned it intoβstructure.
作者
李学鹏
周明言
李聪
朱文慧
仪淑敏
励建荣
李钰金
赵葳
徐嘉忆
焦雪晴
LI Xuepeng;ZHOU Mingyan;LI Cong;ZHU Wenhui;YI Shumin;LI Jianrong;LI Yujin;ZHAO Wei;XU Jiayi;JIAO Xueqing(National & Local Joint Engineering Research Center of Storage, Processing and Safety Control Technology for Fresh Agricultural and Aquatic Products, College of Food Science and Engineering, Bohai University, Jinzhou 121013, China;Rongcheng Taixiang Food Co. Ltd., Rongcheng 264300, China;Dalian Tianbo Green Food Co. Ltd., Dalian 116001, China)
出处
《食品科学》
EI
CAS
CSCD
北大核心
2017年第7期77-81,共5页
Food Science
基金
“十二五”国家科技支撑计划项目(2015BAD17B03)
辽宁省科技厅农业科技攻关计划项目(2015103020)
山东省泰山学者蓝色产业领军人才团队支撑计划项目(鲁政办字(2015)19号)
辽宁省大学生创新创业训练计划项目(201410167000049)
关键词
鱼骨泥
胶体磨细粉碎
湿法超微粉碎
肌原纤维蛋白
结构性质
fish bone paste
colloid mill grinding
wet superfine grinding
myofibrillarlar protein
structural properties