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降低胆固醇的发酵乳杆菌 MJM60397 的益生菌特性研究。

Probiotic Characterization of Cholesterol-Lowering Lactobacillus fermentum MJM60397.

机构信息

Department of Biotechnology, Mepco Schlenk Engineering College, Mepco Nagar, Mepco Engineering College Post, Sivakasi, Tamilnadu, 626005, India.

Center for Nutraceutical and Pharmaceutical Materials, Myongji University, Cheoin-gu, Yongin, Gyeonggi-Do, 17058, Republic of Korea.

出版信息

Probiotics Antimicrob Proteins. 2020 Sep;12(3):1161-1172. doi: 10.1007/s12602-019-09585-y.

Abstract

Lactobacillus fermentum MJM60397 was subjected to in vitro safety tests and in vivo probiotic characterization. The MJM60397 strain was susceptible to antibiotics and was found to be non-mucinolytic and non-hemolytic, and does not produce bioamines. In addition, MJM60397 tolerated simulated oro-gastrointestinal conditions and adhered to Caco-2 cells. MJM60397 also exhibited bile salt hydrolase activity and could deconjugate bile acids. The hypocholesterolemic effects of strain MJM60397 were studied in high-fat diet-induced hypercholesterolemic male ICR mice. The mice were fed a high-cholesterol diet (HCD) and were divided into the following three experimental groups: HCD-control (HCD-Con), mice fed with HCD + L. fermentum MJM60397 (HCD-MJM60397), and mice fed with HCD + L. acidophilus ATCC 43121 (HCD-L.ac) as the positive control. Simultaneously, a normal control diet (NCD) group was maintained. After 7 weeks, the total cholesterol and low-density lipoprotein (LDL) cholesterol levels were significantly reduced in the livers of the HCD-MJM60397 mice when compared to those in the HCD-Con and HCD-L.ac mice. Fecal total bile acid content was significantly (P < 0.05) higher in the HCD-MJM60397 group than in the NCD, HCD-Con, and HCD-L.ac groups. Analysis of gene expression revealed higher expression of LDLR gene in the livers of the HCD-MJM60397 and HCD-L.ac mice than in the livers of the HCD-Con mice. These findings show that the hypocholesterolemic effects of the MJM60397 strain were attributable to its bile salt deconjugating activity, which resulted in decreased bile acid absorption and increased excretion of bile acids in the feces. These results indicate that L. fermentum MJM60397 could be developed into a potential probiotic for reducing the serum cholesterol levels.

摘要

发酵乳杆菌 MJM60397 进行了体外安全性测试和体内益生菌特性研究。该 MJM60397 菌株对抗生素敏感,且不具有粘蛋白分解和溶血活性,不产生生物胺。此外,MJM60397 能耐受模拟口腔-胃肠道条件,并能黏附 Caco-2 细胞。MJM60397 还具有胆盐水解酶活性,并能去结合胆汁酸。在高脂肪饮食诱导的高胆固醇血症雄性 ICR 小鼠中研究了菌株 MJM60397 的降胆固醇作用。将小鼠喂以高胆固醇饮食(HCD),并分为以下三组进行实验:HCD-对照(HCD-Con)、HCD 加发酵乳杆菌 MJM60397(HCD-MJM60397)、HCD 加嗜酸乳杆菌 ATCC 43121(HCD-L.ac)作为阳性对照。同时,维持正常对照组(NCD)。7 周后,与 HCD-Con 和 HCD-L.ac 组相比,HCD-MJM60397 组小鼠肝脏中的总胆固醇和低密度脂蛋白(LDL)胆固醇水平显著降低。HCD-MJM60397 组粪便中总胆汁酸含量显著高于 NCD、HCD-Con 和 HCD-L.ac 组(P<0.05)。基因表达分析显示,HCD-MJM60397 和 HCD-L.ac 组小鼠肝脏中的 LDLR 基因表达高于 HCD-Con 组。这些结果表明,MJM60397 菌株的降胆固醇作用归因于其胆盐水解活性,导致胆汁酸吸收减少和粪便中胆汁酸排泄增加。这些结果表明,发酵乳杆菌 MJM60397 可以开发为一种降低血清胆固醇水平的潜在益生菌。

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