Integrated Analysis of Gut Microbiome and Adipose Transcriptome Reveals Beneficial Effects of Resistant Dextrin from Wheat Starch on Insulin Resistance in Kunming Mice

Author:

Chen Xinyang12,Hou Yinchen13ORCID,Liao Aimei12,Pan Long12ORCID,Yang Shengru3,Liu Yingying12,Wang Jingjing12,Xue Yingchun12,Zhang Mingyi12,Zhu Zhitong12,Huang Jihong1245ORCID

Affiliation:

1. Food Laboratory of Zhongyuan, Luohe 462300, China

2. School of Biological Engineering, Henan University of Technology, Zhengzhou 450001, China

3. College of Food and Biological Engineering, Henan University of Animal Husbandry and Economy, Zhengzhou 450046, China

4. State Key Laboratory of Crop Stress Adaptation and Improvement, College of Agriculture, Henan University, Kaifeng 475004, China

5. School of Food and Pharmacy, Xuchang University, Xuchang 461000, China

Abstract

Systemic chronic inflammation is recognized as a significant contributor to the development of obesity-related insulin resistance. Previous studies have revealed the physiological benefits of resistant dextrin (RD), including obesity reduction, lower fasting glucose levels, and anti-inflammation. The present study investigated the effects of RD intervention on insulin resistance (IR) in Kunming mice, expounding the mechanisms through the gut microbiome and transcriptome of white adipose. In this eight-week study, we investigated changes in tissue weight, glucose–lipid metabolism levels, serum inflammation levels, and lesions of epididymal white adipose tissue (eWAT) evaluated via Hematoxylin and Eosin (H&E) staining. Moreover, we analyzed the gut microbiota composition and transcriptome of eWAT to assess the potential protective effects of RD intervention. Compared with a high-fat, high-sugar diet (HFHSD) group, the RD intervention significantly enhanced glucose homeostasis (e.g., AUC-OGTT, HOMA-IR, p < 0.001), and reduced lipid metabolism (e.g., TG, LDL-C, p < 0.001) and serum inflammation levels (e.g., IL-1β, IL-6, p < 0.001). The RD intervention also led to changes in the gut microbiota composition, with an increase in the abundance of probiotics (e.g., Parabacteroides, Faecalibaculum, and Muribaculum, p < 0.05) and a decrease in harmful bacteria (Colidextribacter, p < 0.05). Moreover, the RD intervention had a noticeable effect on the gene transcription profile of eWAT, and KEGG enrichment analysis revealed that differential genes were enriched in PI3K/AKT, AMPK, in glucose-lipid metabolism, and in the regulation of lipolysis in adipocytes signaling pathways. The findings demonstrated that RD not only ameliorated IR, but also remodeled the gut microbiota and modified the transcriptome profile of eWAT.

Funder

Major Science and Technology Projects for Public Welfare of Henan Province

Zhongyuan Scholars of Henan Province in China

Zhongyuan Scholar Workstation Funded Project

Central Government Guides the Local Science and Technology Development Special Fund

Henan Provincial Key Science & Technology Special Project

Key Research and Development Project of Henan Province

Publisher

MDPI AG

Subject

Molecular Biology,Biochemistry

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