食品科学 ›› 2025, Vol. 46 ›› Issue (24): 335-342.doi: 10.7506/spkx1002-6630-20250625-178

• 专题论述 • 上一篇    

应激处理及外源添加海藻糖对乳酸菌喷雾干燥抗性影响的研究进展

任文荣,王俊国   

  1. (内蒙古农业大学食品科学与工程学院,乳品生物技术与工程教育部重点实验室,农业农村部奶制品加工重点实验室,内蒙古 呼和浩特 010010)
  • 发布日期:2025-12-26
  • 基金资助:
    国家自然科学基金地区科学基金项目(32460597);内蒙古自治区自然科学基金项目(2023MS03009)

Research Progress on the Effects of Stress Treatment and Exogenous Addition of Trehalose on the Spray Drying Resistance of Lactic Acid Bacteria

REN Wenrong, WANG Junguo   

  1. (Key Laboratory of Dairy Biotechnology and Engineering, Ministry of Education, Key Laboratory of Dairy Product Processing of Ministry of Agriculture and Rural Affairs, School of Food Science and Engineering, Inner Mongolia Agricultural University, Hohhot 010010, China)
  • Published:2025-12-26

摘要: 随着人们对健康需求的增长,具有益生功能的乳酸菌在食品和医药领域的应用越来越广泛。喷雾干燥作为一种常用的制备乳酸菌菌粉的手段,具有高效、可持续的优点,但会使乳酸菌面临高温、脱水、氧化等不利因素。研究表明,利用应激处理及外源添加海藻糖的方法可以提高乳酸菌的喷雾干燥抗性,但目前相关方面的研究较少。应激处理可以诱导乳酸菌产生保护机制,提高乳酸菌的耐受性;海藻糖作为一种天然保护剂则可稳定细胞膜结构、保护蛋白质完整性,进而提高乳酸菌的抗性。更为重要的是,应激处理可以提高乳酸菌自身的胞内海藻糖积累量,还可以将外源海藻糖导入细胞内,进而提高乳酸菌的喷雾干燥抗性,为制备高活性乳酸菌菌粉提供理论基础。

关键词: 乳酸菌;应激处理;海藻糖;喷雾干燥抗性;协同作用

Abstract: With the increasing demand for health, probiotic lactic acid bacteria are finding increasingly wide application in the fields of food and medicine. Spray drying, as a commonly used method to prepare a lactic acid bacterial powder, has the advantages of high efficiency and sustainability, but it exposes lactic acid bacteria to adverse factors such as high temperature, dehydration, and oxidation. Studies have shown that using stress treatment and exogenous addition of trehalose can improve the spray drying resistance of lactic acid bacteria, but there were currently only a few studies. Stress treatment can trigger the protective mechanism of lactic acid bacteria, enhancing their tolerance. Trehalose, as a natural protective agent, can stabilize the cell membrane structure, preserve protein integrity, and thus improve the resistance of lactic acid bacteria. More importantly, stress treatment can increase intracellular trehalose accumulation in lactic acid bacteria, and can also introduce exogenous trehalose into the cells, thereby improving the spray-drying resistance of lactic acid bacteria. This finding lays a theoretical foundation for the preparation of a highly active lactic acid bacterial powder.

Key words: lactic acid bacteria; stress treatment; trehalose; spray drying resistance; synergistic effect

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