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Published on: August 17, 2018
Effect of rifaximin on gut-lung axis in mice infected with influenza A virus
Yafei Chen1, Zuoyi Jiang2, Zhihai Lei2
1Animal Neurobiology Laboratory, College of Veterinary Medicine, Nanjing Agricultural University, Nanjing, 210095, Jiangsu Province, PR China; MOE International Joint Collaborative Research Laboratory for Animal Health and Food Safety & Jiangsu Engineering Laboratory of Animal Immunology, College of Veterinary Medicine, Nanjing Agricultural University, Nanjing, 210095, Jiangsu Province, PR China.
Abstract:
Gut-lung axis injury is a common finding in patients with respiratory diseases as well as in animal model of influenza virus infection. Influenza virus damages the intestinal microecology while affecting the lungs. Rifaximin, a non-absorbable derivative of rifamycin, is an effective antibiotic that acts by inhibiting bacterial RNA synthesis. This study aimed to determine whether rifaximin-perturbation of the intestinal microbiome leads to protective effects against influenza infection, via the gut-lung axis. Our results showed that influenza virus infection caused inflammation of and damage to the lungs. The expression of tight junction proteins in the lung and colon of H1N1 infected mice decreased significantly, attesting that the barrier structure of the lung and colon was damaged. Due to this perturbation in the gut-lung axis, the intestinal microbiota became imbalanced as Escherichia coli bacteria replicated opportunistically, causing intestinal injury. When influenza infection was treated with rifamixin, qPCR results from the gut showed significant increases in Lactobacillus and Bifidobacterium populations, while Escherichia coli populations markedly decreased. Furthermore, pathology sections and western blotting results illustrated that rifaximin treatment strengthened the physical barriers of the lung-gut axis through increased expression of tight junction protein in the colon and lungs. These results indicated that rifaximin ameliorated lung and intestine injury induced by influenza virus infection. The mechanisms identified were the regulation of gut flora balance and intestinal and lung permeability, which might be related to the regulation of the gut-lung axis. Rifaximin might be useful as a co-treatment drug for the prevention of influenza virus infection.
Insights
Rifaximin treatment rebalances gut bacteria, strengthening the gut-lung axis and reducing lung and intestinal injury from influenza virus infection. This antibiotic may aid in preventing influenza.
Area of Science:
- Microbiology
- Immunology
- Gastroenterology
Background:
- The gut-lung axis links intestinal health to respiratory function, and influenza infection disrupts this connection.
- Influenza virus infection damages the lungs and alters the gut microbiome, leading to increased intestinal permeability.
Purpose of the Study:
- To investigate if rifaximin, an antibiotic, can protect against influenza infection by modulating the gut microbiome and influencing the gut-lung axis.
- To assess the impact of rifaximin on gut microbiota composition and intestinal/lung barrier integrity during influenza infection.
Main Methods:
- Mice infected with influenza virus (H1N1) were treated with rifaximin.
- Gut microbiota composition was analyzed using qPCR.
- Lung and colon tissue were examined for inflammation and tight junction protein expression.
Main Results:
- Influenza infection led to lung inflammation and damage, with decreased tight junction proteins in the lung and colon.
- Rifaximin treatment increased beneficial bacteria (Lactobacillus, Bifidobacterium) and decreased Escherichia coli in the gut.
- Rifaximin treatment enhanced tight junction protein expression, reinforcing lung and colon barrier integrity.
Conclusions:
- Rifaximin ameliorates influenza-induced lung and intestinal injury by regulating gut flora balance and improving barrier function.
- These findings suggest that rifaximin's protective effects are mediated through the gut-lung axis.
- Rifaximin shows potential as a co-treatment for preventing influenza virus infection.
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