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The mechanism exploration of the non‐colonic toxicity and obesity inhibition of food‐grade κ‐carrageenan by transcriptome.

Authors :
Zhang, Hui
Cao, Wanxiu
Liu, Fang
Gao, Yuan
Chang, Yaoguang
Xue, Changhu
Tang, Qingjuan
Source :
Food Science & Nutrition; Nov2021, Vol. 9 Issue 11, p6232-6244, 13p
Publication Year :
2021

Abstract

Previous study has suggested the colonic nontoxicity and obesity inhibition of food‐grade κ‐carrageenan in obese mice. Further study using transcriptome is important to provide further understanding on the gene expressions of inflammation and obesity. Here, the obese mice without any treatment (HFD) or with 5% food‐grade κ‐carrageenan diet intervention (H5%) were used to perform colonic transcriptome sequencing. The results showed that genes involved in the inflammatory pathways or tight junction protein encoding were not significantly dysregulated by 5% carrageenan. However, the expression of lipid metabolism genes meaningfully changed as evidenced by the decreased gene levels of adipocytokines, lipogenesis, lipid absorption and transport, and the increased adipolysis and oxidation. In addition, the carrageenan metabolism experiments by toluidine blue (TB) staining of colon and high‐performance size exclusion chromatography (HPSEC) of feces supernatant showed that the food‐grade κ‐carrageenan was not absorbed or significantly degraded in the digestive tract of obese mice. Hence, the fact that food‐grade κ‐carrageenan was not significantly metabolized by the organism and did not cause obvious dysregulation of colonic inflammatory genes provided evidences for its noncolonic toxicity in obese mice. An anti‐obesity potential of food‐grade κ‐carrageenan was probably mediated by the regulation of lipids metabolism‐related genes. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20487177
Volume :
9
Issue :
11
Database :
Complementary Index
Journal :
Food Science & Nutrition
Publication Type :
Academic Journal
Accession number :
153384297
Full Text :
https://doi.org/10.1002/fsn3.2581