大豆蛋白粉样纤维作为天然冷保护剂:结构特征和水相互作用机制
Guannan Liu1, Ying Wang1, Xilin Niu1
1Sanya Institute of Nanjing Agricultural University, Whole Grain Food Engineering Research Center, College of Food Science and Technology, Nanjing Agricultural University, Nanjing, Jiangsu 210095, China.
Biomacromolecules
|January 9, 2026
概括
大豆蛋白粉样纤维 (SAFs) 有效地抑制了冰的再结晶. 这些SAF表现出显著的冷保护潜力,改善结后的细胞恢复.
科学领域:
- 生物材料科学 生物材料科学
- 蛋白质自我组装的方法
- 低温生物学 低温生物学
背景情况:
- 自组装的蛋白质可以抑制冰的再结晶,这对于冷保护至关重要.
- 豆蛋白分离物 (SPI) 可以加工成粉样蛋白纤维 (SAF).
研究的目的:
- 制造大豆蛋白粉样纤维 (SAFs) 具有增强的冰再结晶抑制 (IRI) 活性.
- 调查SAF的IRI活动的结构基础及其冷保护功效.
主要方法:
- 结合发芽和酸热处理,从SPI制造SAF.
- 评估了IRI活动,冰核和冰晶形态.
- 分析结构变化 (聚合,疏水性,β-片含量).
- 在解后对Caco-2细胞进行评估的冷保护作用.
主要成果:
- 经过20小时治疗的两天发芽的SPI (SAF-20) 显示出最强的IRI活动.
- SAF-20在不改变冰形态的情况下表现出度依赖的IRI和冰核化.
- 结构分析显示,SAF中的聚合,疏水性和β-片含量增加.
- SAF-20显著改善了冷保存的Caco-2细胞的解后恢复.
结论:
- 从发芽的大豆蛋白中获得的优化SAF表现出强大的冰再结晶抑制.
- 结构修改增强了蛋白质与冰的相互作用,导致了冷保护.
- SAFs显示出作为细胞保存的有效冷保护剂的前景.
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