食品科学 ›› 2026, Vol. 47 ›› Issue (14): 309-316.doi: 10.7506/spkx1002-6630-20251231-280

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单宁酸与海藻糖复合冷冻保护剂对葡萄酒植物乳植杆菌低温保存性能的影响

麻俐彬,高子涵,翟一闻,刘树文,颉向红   

  1. (西北农林科技大学葡萄酒学院,陕西?杨凌 712100)
  • 发布日期:2026-08-24
  • 基金资助:
    国家自然科学基金青年科学基金项目(C类)(32402057); 陕西省博士后科研资助项目(2024BSHSDZZ051;2023BSHTBZZ23); 中国博士后科学基金会博士后资助项目(GZB20230595)

Effect of a Tannic Acid and Trehalose Composite Cryoprotectant on the Cryopreservation of Lactiplantibacillus plantarum Isolated from Wine

MA Libin, GAO Zihan, ZHAI Yiwen, LIU Shuwen, XIE Xianghong   

  1. (College of Enology, Northwest A&F University, Yangling 712100, China)
  • Published:2026-08-24

摘要: 为解决传统化学冷冻保护剂毒性残留、低温保护效果有限的问题,本研究以绿色天然的单宁酸(tannic acid,TA)与海藻糖(trehalose,Tre)为原料制备绿色复合冷冻保护剂,结合流变学分析等技术探究TA与Tre物质的量比对保护剂理化特性、贮存稳定性及对葡萄酒植物乳植杆菌XJ-25(LPXJ-25)低温保存效果的影响。采用平板计数法测定冷冻保护剂处理后植物乳植杆菌细胞存活率,评估其对菌体的保护效果。结果表明,TA与Tre通过氢键形成稳定超分子网络结构,使得复合保护剂呈现典型非牛顿流体特性,其玻璃化转变温度达-63.321 19 ℃,与传统保护剂甘油相近。通过点板实验验证TA∶Tre物质的量比为1∶1为最优配比,使用该配比复合保护剂处理,并于-80 ℃冻存30 d后,LPXJ-25存活率达76.67%,显著高于甘油对照组的34%(P<0.001)。本研究开发的绿色复合保护剂解决了传统保护剂的安全性隐患,为植物乳植杆菌及相关食品益生菌的绿色低温保存提供了新方法。

关键词: 单宁酸;海藻糖;植物乳植杆菌;冷冻保护剂;细胞存活率

Abstract: To overcome the limitations of traditional chemical cryoprotectants, such as toxic residues and inadequate cryoprotective effect, this study developed a green composite cryoprotectant consisting of natural, non-toxic tannic acid (TA) and trehalose (Tre). Various analysis techniques such as rheological analysis were employed to investigate the effects of different TA/Tre molar ratios on the physicochemical properties and storage stability of the composite cryoprotectant, and its cryoprotective effect on Lactiplantibacillus plantarum XJ-25 (LPXJ-25), isolated from wine. The plate counting method was used to determine the cell viability of LPXJ-25 after cryoprotectant treatment. The results showed that TA and Tre formed a stable supramolecular network structure via hydrogen bonding, endowing the composite cryoprotectant with typical non-Newtonian fluid characteristics. Notably, its glass transition temperature reached −63.321 19 ℃, which was comparable to that of glycerol, a conventional cryoprotectant. The spot assay results confirmed that the optimal molar ratio of TA to Tre was 1:1. After treatment with this composite cryoprotectant and cryopreservation at −80 ℃ for 30 days, the viability of LPXJ-25 reached 76.67%, which was significantly higher than that (34%) observed when using glycerol (P < 0.001). The green composite cryoprotectant eliminates the safety risks associated with traditional chemical cryoprotectants, thereby providing a novel approach for the green cryopreservation of L. plantarum and other food-related probiotics.

Key words: tannic acid; trehalose; Lactiplantibacillus plantarum; cryoprotectant; cell viability

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