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Ishige okamurae Celluclast extract ameliorates non-alcoholic fatty liver in high-fructose diet-fed mice by modulation of lipid metabolism and gut microbiota composition

Authors
Im, Seung TaeMun, HaeunPark, SubinKang, HyeonKim, Wook ChulHeo, Soo-JinLee, Seung-Hong
Issue Date
Jul-2023
Publisher
Elsevier BV
Keywords
Fructose-induced fatty liver; Gut microbiota; Acyl-CoA Synthetase Short chain family member 2; Ishige okamurae; Celluclast extract
Citation
Food and Chemical Toxicology, v.177
Journal Title
Food and Chemical Toxicology
Volume
177
URI
https://scholarworks.bwise.kr/sch/handle/2021.sw.sch/24798
DOI
10.1016/j.fct.2023.113864
ISSN
0278-6915
1873-6351
Abstract
Recently, a new mechanism has revealed that gut microbiota plays a pivotal role in metabolizing fructose to acetate that facilitates hepatic lipogenesis. Therefore, our study investigated the role of microbiome on abnormal lipid synthesis in the presence of fructose and identified attenuating effects of Ishige okamurae Celluclast extract (IOCE) against fructose-induced fatty liver. The results indicated that oral administration of IOCE (150 and 300 mg/kg/day for 12 weeks) significantly reduced both gut microbiota-mediated and-non-mediated hepatic lipo-genesis simultaneously triggered by fructose metabolism. IOCE reduced hepatic triglyceride accumulation and expression levels of key enzymes for glucolipid metabolism. In addition, IOCE regulated fatty acid synthesis, & beta;-oxidation, and improved hepatic inflammation. Furthermore, IOCE inhibited direct fructose-to-acetate con -version and altered the compositions of gut microbiota. These findings suggest that IOCE might serve as a po-tential prebiotic dietary supplement by ameliorating fatty liver through dual regulation of classical lipogenic pathway and gut microbiota.
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