Processed Meat Protein Promoted Inflammation and Hepatic Lipogenesis by Upregulating Nrf2/Keap1 Signaling Pathway in Glrx-Deficient Mice
Ahmad MI, Zou X, Ijaz MU, Hussain M, Liu C, Xu X, Zhou G, Li C, Li C
Journal of agricultural and food chemistry · 30 citations
How it was studied
- Design
- Animal study (classified by our AI screen)
- Studied in
- Animals
- Main outcome
- Health markers and function
Who paid for it
- Funding
- Independent funding
- Government
- National Natural Science Foundation of China
- Grants
- National Natural Science Foundation of China (31530054)
Based on 1 listed funder(s).
Publication
- Published
- 2019-07-26 · J Agric Food Chem · vol. 67 · issue 32 · pp. 8794–8809
- Publisher
- American Chemical Society
- Cited
- 37 citations · more than 87% of similar papers · 1.9× the field average
- References
- 64 works
- Access
- Paywalled
- Research areas
- Genomics, phytochemicals, and oxidative stress · Liver Disease Diagnosis and Treatment · Diet, Metabolism, and Disease
- Keywords
- Lipogenesis, KEAP1, Inflammation, Chemistry, Cell biology, Biology, Biochemistry, Lipid metabolism, Immunology, Gene, Transcription factor
- MeSH
- liver, animals, mice, inbred c57bl, mice, knockout, humans, mice, inflammation, cholesterol, triglycerides, cytokines, signal transduction, meat products, female, male, lipogenesis, nf-e2-related factor 2, glutaredoxins, gastrointestinal microbiome, red meat, kelch-like ech-associated protein 1
8 authors
From CN
- Muhammad Ijaz AhmadNanjing Agricultural University
- Xiaoyou ZouNanjing Agricultural University
- Muhammad Umair IjazNanjing Agricultural University
- Muzahir HussainNanjing Agricultural University
- Congcong LiuNanjing Agricultural University
- Xinglian XuNanjing Agricultural University
Abstract
Oxidative stress may play a critical role in the progression of liver disorders. Increasing interest has been given to the associations among diet, oxidative stress, gut-liver axis, and nonalcoholic fatty liver disease. Here, we investigated the effects of processed meat proteins on biomarkers of lipid homeostasis, hepatic metabolism, antioxidant functions, and gut microbiota composition in glutaredoxin1 deficient (Glrx1-/-) mice. The wild-type (WT) and Glrx1-/- mice were fed a soy protein diet (SPD), a dry-cured pork protein diet (DPD), a braised pork protein diet (BPD), and a cooked pork protein diet (CPD) at a dose of 20% of protein for 3 months. Serum and hepatic total cholesterol, serum endotoxin, hepatic liver droplet %, and antioxidant capacity were significantly increased in the CPD fed WT mice. In addition, CPD fed Glrx1-/- mice significantly increased total cholesterol, triacylglycerol, and pro-inflammatory cytokines which are accompanied by higher steatosis scores, intrahepatic lipid accumulation, and altered gene expression associated with lipid metabolism. Furthermore, hepatic gene expression of Nrf2/keap1 signaling pathway and its downstream signaling targets were determined using RT-qPCR. Glrx1 deficiency increased Nrf2 activity and expression of its target genes (GPx, catalase, SOD1, G6pd, and Bbc3), which was exacerbated by intake of CPD. Metagenomic analyses revealed that Glrx1-/- mice fed meat protein diets had higher abundances of Mucispirillum, Oscillibacter, and Mollicutes but lower abundances of Bacteroidales S24-7 group_norank, Blautia, and Anaerotruncus than their wild-type counterparts. In summary, Glrx1 deficiency induced an increase in serum biomarkers for lipid homeostasis, gut microbiota imbalance, and upregulation of Nrf2/Keap1 and antioxidant defense genes, which was aggravated by cooked meat protein diet.
Abstract via Europe PMC. Copyright remains with the authors or publisher.
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