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中国精品科技期刊2020
朱宗涛, 赵鹏昊, Amro Abdelazez, 周诗昊, 万峰, 张晟, 孟祥晨. 两株动物双歧杆菌的潜在干预糖尿病作用[J]. 食品工业科技, 2018, 39(13): 136-141,149. DOI: 10.13386/j.issn1002-0306.2018.13.025
引用本文: 朱宗涛, 赵鹏昊, Amro Abdelazez, 周诗昊, 万峰, 张晟, 孟祥晨. 两株动物双歧杆菌的潜在干预糖尿病作用[J]. 食品工业科技, 2018, 39(13): 136-141,149. DOI: 10.13386/j.issn1002-0306.2018.13.025
ZHU Zong-tao, ZHAO Peng-hao, Amro Abdelazez, ZHOU Shi-hao, WAN Feng, ZHANG Sheng, MENG Xiang-chen. Potential Intervention for Diabetes Mellitus of Two Bifidobacterium animalis Strains[J]. Science and Technology of Food Industry, 2018, 39(13): 136-141,149. DOI: 10.13386/j.issn1002-0306.2018.13.025
Citation: ZHU Zong-tao, ZHAO Peng-hao, Amro Abdelazez, ZHOU Shi-hao, WAN Feng, ZHANG Sheng, MENG Xiang-chen. Potential Intervention for Diabetes Mellitus of Two Bifidobacterium animalis Strains[J]. Science and Technology of Food Industry, 2018, 39(13): 136-141,149. DOI: 10.13386/j.issn1002-0306.2018.13.025

两株动物双歧杆菌的潜在干预糖尿病作用

Potential Intervention for Diabetes Mellitus of Two Bifidobacterium animalis Strains

  • 摘要: 为了获得对糖尿病有潜在干预作用的菌株,本实验对阳性对照菌株动物双歧杆菌BB12、受试菌株20-9和15-2的抗氧化性质,α-葡萄糖苷酶活力抑制能力,对酸、胆盐和模拟消化道环境的抗性、粘附能力和粘附抑制能力进行研究。结果显示:动物双歧杆菌15-2完整细胞和细胞提取物的羟自由基清除能力和还原能力高于菌株20-9和菌株BB12,α-葡萄糖苷酶活力抑制能力高于菌株20-9,两者抑制率分别为26.90%和12.83%,而菌株BB12对α-葡萄糖苷酶活力无抑制作用,菌株15-2经模拟消化道后的存活率和对Caco-2细胞的粘附率(分别为88.91%和27.59%)强于菌株20-9和菌株BB12。菌株15-2对酸耐受性高于菌株20-9和BB12,在胆盐和粘附抑制能力方面虽略逊于菌株BB12,但仍优于菌株20-9。因此,动物双歧杆菌15-2可以作为潜在的干预糖尿病作用菌株进一步用于动物实验。

     

    Abstract: In order to obtain a strain that had a potential intervention for diabetes,the antioxidative properties,inhibition of α-glucosidase activity,the resistance toacid,bile saltsand the simulated digestive tract,adhesion and adhesion inhibition of Bifidobacterium animalis BB12,15-2 and 20-9 were studied in this study. The results showed that the hydroxyl radical scavenging ability and reducing ability of Bifidobacterium animalis 15-2 intact cells and cell extracts were higher than those of 20-9 and BB12.The inhibitory rate of α-glucosidase activity of 15-2 was higher than that of 20-9,the inhibitory rates of both were 26.90% and 12.83%,respectively.While BB12 had no inhibitory effect on the activity of α-glucosidase.The survival rate of 15-2 after simulated digestive tract and the adhesion rate to Caco-2 cells were 88.91% and 27.59%,respectively,stronger than that of 20-9 and BB12.Moreover,15-2 was also more tolerant of acids than 20-9 and BB12,although slightly inferior to BB12 in bile salt and adhesion inhibition,but still better than 20-9.The results indicated that Bifidobacterium animalis 15-2 was a candidate for treatment of diabetes mellitus.

     

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