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发酵乳杆菌 MCC2760 可纠正高脂肪诱导的大鼠胆汁酸肠肝循环紊乱。

Lactobacillus fermentum MCC2760 abrogate high-fat induced perturbations in the enterohepatic circulation of bile acids in rats.

机构信息

Dept. of Biochemistry, CSIR-Central Food Technological Research Institute, Mysore 570020, Karnataka, India.; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad-201002, India.

Dept. of Biochemistry, CSIR-Central Food Technological Research Institute, Mysore 570020, Karnataka, India.

出版信息

Life Sci. 2023 May 1;320:121563. doi: 10.1016/j.lfs.2023.121563. Epub 2023 Mar 11.

Abstract

AIM

This study in hyperlipidemic rats elucidated the effect of Lactobacillus fermentum MCC2760 on intestinal bile acid (BA) uptake, hepatic BA synthesis, and enterohepatic BA transporters.

MAIN METHODS

Diets rich in saturated fatty acids [coconut oil (CO)] and omega-6 fatty acids [sunflower oil (SFO)] at 25 g fat/100 g diet were fed to rats with or without MCC2760 (10 cells/kg body weight). After 60 days of feeding, intestinal BA uptake and expression of Asbt, Osta/b mRNA and protein, and hepatic expression of Ntcp, Bsep, Cyp7a1, Fxr, Shp, Lrh-1, and Hnf4a mRNA were measured. Hepatic expression of HMG-CoA reductase protein and its activity and total BAs in serum, liver, and feces were assessed.

KEY FINDINGS

Hyperlipidaemic groups (HF-CO and HF-SFO) had: 1) increased intestinal BA uptake, Asbt and Osta/b mRNA expression, and ASBT staining 2) increased BA in serum, 3) decreased hepatic expression of Ntcp, Bsep, and Cyp7a1 mRNA, and NTCP staining 4) increased activity of HMG-CoA reductase, 5) increased hepatic expression of Fxr and Shp mRNA, 6) decreased hepatic expression of Lrh-1 and Hnf4a mRNA, and 7) decreased BA in Feces when compared to their respective controls (N-CO and N-SFO) and experimental groups (HF-CO + LF and HF-SFO + LF). Immunostaining revealed increased intestinal Asbt and hepatic Ntcp protein expression in the HF-CO and HF-SFO groups compared to control and experimental groups.

SIGNIFICANCE

Incorporating probiotics like MCC2760 abrogated hyperlipidemia-induced changes in the intestinal uptake, hepatic synthesis, and enterohepatic transporters of BA in rats. Probiotic MCC2760 can be used to modulate lipid metabolism in high-fat-induced hyperlipidemic conditions.

摘要

目的

本研究旨在探讨发酵乳杆菌 MCC2760 对高脂血症大鼠肠道胆汁酸(BA)摄取、肝脏 BA 合成和肠肝 BA 转运体的影响。

主要方法

高脂饮食(富含饱和脂肪酸的椰子油 [CO] 和富含 ω-6 脂肪酸的葵花籽油 [SFO],脂肪含量为 25 g/100 g 饮食)喂养大鼠,同时给予或不给予 MCC2760(10 个细胞/公斤体重)。喂养 60 天后,测量肠道 BA 摄取、Asbt、Osta/bmRNA 和蛋白表达以及肝脏 Ntcp、Bsep、Cyp7a1、FXR、Shp、Lrh-1 和 Hnf4a mRNA 的表达。还评估了肝 HMG-CoA 还原酶蛋白及其活性和血清、肝脏和粪便中的总 BA。

主要发现

高脂血症组(HF-CO 和 HF-SFO)具有以下特征:1)肠道 BA 摄取、Asbt 和 Osta/bmRNA 表达和 ASBT 染色增加;2)血清中 BA 增加;3)肝脏 Ntcp、Bsep 和 Cyp7a1mRNA 表达和 NTCP 染色减少;4)HMG-CoA 还原酶活性增加;5)肝脏 FXR 和 Shp mRNA 表达增加;6)肝脏 Lrh-1 和 Hnf4a mRNA 表达减少;7)粪便中 BA 减少,与各自对照组(N-CO 和 N-SFO)和实验组(HF-CO+LF 和 HF-SFO+LF)相比。免疫组化显示,与对照组和实验组相比,HF-CO 和 HF-SFO 组肠道 Asbt 和肝脏 Ntcp 蛋白表达增加。

意义

在高脂血症大鼠中添加益生菌 MCC2760 可阻断 BA 肠道摄取、肝脏合成和肠肝转运体的改变。益生菌 MCC2760 可用于调节高脂肪诱导的高脂血症条件下的脂质代谢。

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