Lactobacillus plantarum-Derived Postbiotics Ameliorate Acute Alcohol-Induced Liver Injury by Protecting Cells from Oxidative Damage, Improving Lipid Metabolism, and Regulating Intestinal Microbiota

Author:

Ye Wei1ORCID,Chen Zengqiang2,He Zhuoqi1,Gong Haochen1,Zhang Jin1,Sun Jiaju1,Yuan Shanshan3,Deng Junjie3,Liu Yanlong4,Zeng Aibing1ORCID

Affiliation:

1. School of Laboratory Medicine and Life Science, Wenzhou Medical University, Wenzhou 325035, China

2. Healthcare Center of the First Affiliated Hospital of Wenzhou Medical University, Wenzhou 325000, China

3. Wenzhou Institute, University of Chinese Academy Sciences, Wenzhou 325000, China

4. School of Pharmaceutical Science, Wenzhou Medical University, Wenzhou 325035, China

Abstract

Here, the aim was to evaluate the protective effect of Lactobacillus plantarum-derived postbiotics, i.e., LP-cs, on acute alcoholic liver injury (ALI). After preincubation with LP-cs, HL7702 human hepatocytes were treated with alcohol, and then the cell survival rate was measured. C57BL/6 male mice were presupplemented with or without LP-cs and LP-cs-loaded calcium alginate hydrogel (LP-cs-Gel) for 3 weeks and given 50% alcohol gavage to establish the mouse model of ALI, LP-cs presupplementation, and LP-cs-Gel presupplementation. The histomorphology of the liver and intestines; the levels of serum AST, ALT, lipid, and SOD activity; liver transcriptomics; and the metagenome of intestinal microbiota were detected in all mouse models. In vitro, LP-cs significantly increased the survival rate of alcohol-treated cells. In vivo, presupplementation with LP-cs and LP-cs-Gel restored the levels of serum AST, ALT, and SOD activity, as well as TC and TG, after acute alcohol intake. In the LP-cs-presupplemented mice, the genes involved in fatty acid metabolic processes were upregulated and the genes involved in steroid biosynthesis were downregulated significantly as compared with the ALI mice. LP-cs significantly increased the abundance of intestinal microbiota, especially Akkermansia muciniphila. In conclusion, LP-cs ameliorates ALI by protecting hepatocytes against oxidative damage, thereby, improving lipid metabolism and regulating the intestinal microbiota. The effect of LP-cs-Gel is similar to that of LP-cs.

Funder

Zhejiang Provincial Natural Science Foundation of China

Science and Technology Plan Project of Wenzhou

Qianjiang Talent Project of Zhejiang

Publisher

MDPI AG

Subject

Food Science,Nutrition and Dietetics

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