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Oral Administration of Edible Seaweed Undaria Pinnatifida (Wakame) Modifies Glucose and Lipid Metabolism in Rats: A DNA Microarray Analysis
Author(s) -
Yoshinaga Keiko,
Nakai Yuji,
Izumi Hikari,
Nagaosa Kaz,
Ishijima Tomoko,
Nakano Takahisa,
Abe Keiko
Publication year - 2018
Publication title -
molecular nutrition and food research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.495
H-Index - 131
eISSN - 1613-4133
pISSN - 1613-4125
DOI - 10.1002/mnfr.201700828
Subject(s) - lipid metabolism , biology , microarray , ingestion , gene expression , endocrinology , metabolism , metabolic pathway , downregulation and upregulation , carbohydrate metabolism , gene , medicine , biochemistry
Scope Wakame is an edible seaweed that is a common constituent in the Japanese diet. Previous studies showed that wakame consumption is associated with the prevention of metabolic syndrome, but the molecular mechanisms underlying the protective effects are poorly understood. Methods and results To determine if the expression of hepatic genes is affected by ingestion of the brown seaweed Undaria pinnatifida (wakame), rats were fed a diet containing 0, 0.1, or 1.0 g per 100 g dried wakame powder for 28 days. Administration of 1% wakame significantly decreased serum total cholesterol levels. Hepatic gene expression was investigated using DNA microarray analysis, and the results showed that wakame suppresses the lipogenic pathway by downregulating SREBF‐1. Moreover, bile acid biosynthesis and gluconeogenesis were promoted by upregulation of the PPAR signaling pathway, which leads to a reduction in the accumulation of cholesterol and promotion of β‐oxidation. Conclusions These results suggest that wakame ingestion affects glucose and lipid metabolism by altering the expression of SREBF‐1 and PPAR signal‐related genes.