肌原纤维
变性(裂变材料)
化学
离子强度
溶解度
吸水率
结晶水
色谱法
生物物理学
食品科学
生物化学
水溶液
植物
有机化学
核化学
生物
作者
Shuyi Qian,Feifei Hu,Xia Li,Chunhui Zhang,Christophe Blecker
出处
期刊:Food Chemistry
[Elsevier BV]
日期:2022-06-04
卷期号:393: 133398-133398
被引量:19
标识
DOI:10.1016/j.foodchem.2022.133398
摘要
This study aimed to facilitate the understanding on the origin of thawing drip under different freezing rate. Eventually we observed significantly greater thaw loss produced by slow freezing (8.58%) as compared to fast freezing (6.41%) after 24 h of thawing. Back to the freezing, ice crystallization induced decline in pH and the cold denaturation of myofibrillar protein. However, independent of freezing rate, we noticed protein renaturation with pH restoring during thawing, evidenced by the decreasing surface hydrophobicity, increasing solubility and thermal stability, and gradually stabilized secondary structure. Meanwhile, the water-holding of myofibrils increased with thawing process along with the rising water mobility. Under fast freezing, the results indicated less extensive protein cold denaturation and lower water mobility during thawing. Besides, we proposed that the microenvironment of lower ionic strength in fast freezing should benefit the protein renaturation and water re-absorption, ultimately contributed to lower thaw loss.
科研通智能强力驱动
Strongly Powered by AbleSci AI