Effects of Scallop Mantle Toxin on Intestinal Microflora and Intestinal Barrier Function in Mice

Author:

Geng Xiong1,Lin Ran12,Hasegawa Yasushi2,Chao Luomeng3,Shang Huayan13,Yang Jingjing4,Tian Weina14,Ma Wenting1,Zhuang Miaomiao1,Li Jianrong1

Affiliation:

1. College of Food Science and Engineering, Bohai University, Jinzhou 121013, China

2. College of Environmental Technology, Muroran Institute of Technology, Muroran 050-8585, Japan

3. College of Animal Science and Technology, Inner Mongolia Minzu University, Tongliao 028000, China

4. Kerqin District Testing Institute for Food and Drug Control, Tongliao 028000, China

Abstract

Previous studies have shown that feeding mice with food containing mantle tissue from Japanese scallops results in aggravated liver and kidney damage, ultimately resulting in mortality within weeks. The aim of this study is to evaluate the toxicity of scallop mantle in China’s coastal areas and explore the impact of scallop mantle toxins (SMT) on intestinal barrier integrity and gut microbiota in mice. The Illumina MiSeq sequencing of V3-V4 hypervariable regions of 16S ribosomal RNA was employed to study the alterations in gut microbiota in the feces of SMT mice. The results showed that intestinal flora abundance and diversity in the SMT group were decreased. Compared with the control group, significant increases were observed in serum indexes related to liver, intestine, inflammation, and kidney functions among SMT-exposed mice. Accompanied by varying degrees of tissue damage observed within these organs, the beneficial bacteria of Muribaculaceae and Marinifilaceae significantly reduced, while the harmful bacteria of Enterobacteriaceae and Helicobacter were significantly increased. Taken together, this article elucidates the inflammation and glucose metabolism disorder caused by scallop mantle toxin in mice from the angle of gut microbiota and metabolism. SMT can destroy the equilibrium of intestinal flora and damage the intestinal mucosal barrier, which leads to glucose metabolism disorder and intestinal dysfunction and may ultimately bring about systemic toxicity.

Publisher

MDPI AG

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