Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

A-239 Cxcl10 induced gut dysbiosis exacerbates acute lung injury and secondary infection in influenza by inhibiting il22

View through CrossRef
Abstract Background Secondary infections are the most cause of severe pulmonary injury and death in influenza. CXCL10, known as interferon γ-induced protein 10(IP-10), is highly upregulated in response to IFN-γstimulation during influenza. Previous studies show that CXCL10 contributes to bacteria co-infections and worse finales in influenza. However, the underlying mechanisms by which CXCL10 facilitate secondary infections remains unclear. Emerging evidences show that influenza virus infections disturb the composition and function of gut microbiota, which in turn influences the infection process. Herein, we aimed to explore whether CXCL10 could affect the progress of influenza infection and secondary infection in a gut microbiota dependent manner. Methods CXCL10 knockout mice were used to determine the role of CXCL10 in staphylococcus aureus co-infection after influenza A virus (IAV) infection. Lung tissues from CXCL10 knockout mice were collected for Transcriptomics sequencing. Feces from mice and clinicals including IAV patients and healthy individuals were collected for Metagenomic sequencing. Paired serum samples were collected for Metabolomic sequencing. QRT-PCR was performed to determine the expression of inflammatory factors in lung tissues from CXCL10 knockout mice. Elisa assays were used to measure the serum expression levels of CXCL10 and IL22. Flow cytometry was applied to detect the proportion of IL22+ cells. Fecal microbiota transplantation (FMT) was applied to confirm that CXCL10 plays an adverse role in acute lung injury and staphylococcus aureus co-infection after IAV infection by disrupting intestinal microbiome homeostasis. Results CXCL10 aggravated acute lung injury and promoted staphylococcus aureus coinfection after IAV infection. Transcriptomics sequencing results suggests improved cell membrane integrity and regeneration of epithelial cells after IAV infection in CXCL10 knockout mice with an upregulation of integrity proteins. CXCL10 knockout significantly increased the expression levels of IL22 without influencing virus duplication. rh-IL22 protects lung epithelial cell from staphylococcus aureus co-infection in influenza and increased the expression of tight junction proteins. The gut microbiome shows different structures between wild type mice and knockout mice, as well as clinical samples according to serum CXCL10 expression levels. We found some genera were markedly increased in knockout mice and patients with low serum CXCL10 expression levels including Lactobacillus, Lachnospiraceae, Oscillibacter, Odoribacter, Eubacterium. FMT from patients with low serum CXCL10 levels and healthy individuals ameliorating lung pathological damage. Conclusions This study interpreted that CXCL10 exacerbates acute lung injury and secondary infection in influenza by inducing gut dysbiosis, suggesting that balancing the gut flora could be assistant treatments to protect from acute lung injury and secondary infections in influenza. And IL22 may be a potential mediating factor between gut-lung axis to improve epithelial integrity.
Oxford University Press (OUP)
Title: A-239 Cxcl10 induced gut dysbiosis exacerbates acute lung injury and secondary infection in influenza by inhibiting il22
Description:
Abstract Background Secondary infections are the most cause of severe pulmonary injury and death in influenza.
CXCL10, known as interferon γ-induced protein 10(IP-10), is highly upregulated in response to IFN-γstimulation during influenza.
Previous studies show that CXCL10 contributes to bacteria co-infections and worse finales in influenza.
However, the underlying mechanisms by which CXCL10 facilitate secondary infections remains unclear.
Emerging evidences show that influenza virus infections disturb the composition and function of gut microbiota, which in turn influences the infection process.
Herein, we aimed to explore whether CXCL10 could affect the progress of influenza infection and secondary infection in a gut microbiota dependent manner.
Methods CXCL10 knockout mice were used to determine the role of CXCL10 in staphylococcus aureus co-infection after influenza A virus (IAV) infection.
Lung tissues from CXCL10 knockout mice were collected for Transcriptomics sequencing.
Feces from mice and clinicals including IAV patients and healthy individuals were collected for Metagenomic sequencing.
Paired serum samples were collected for Metabolomic sequencing.
QRT-PCR was performed to determine the expression of inflammatory factors in lung tissues from CXCL10 knockout mice.
Elisa assays were used to measure the serum expression levels of CXCL10 and IL22.
Flow cytometry was applied to detect the proportion of IL22+ cells.
Fecal microbiota transplantation (FMT) was applied to confirm that CXCL10 plays an adverse role in acute lung injury and staphylococcus aureus co-infection after IAV infection by disrupting intestinal microbiome homeostasis.
Results CXCL10 aggravated acute lung injury and promoted staphylococcus aureus coinfection after IAV infection.
Transcriptomics sequencing results suggests improved cell membrane integrity and regeneration of epithelial cells after IAV infection in CXCL10 knockout mice with an upregulation of integrity proteins.
CXCL10 knockout significantly increased the expression levels of IL22 without influencing virus duplication.
rh-IL22 protects lung epithelial cell from staphylococcus aureus co-infection in influenza and increased the expression of tight junction proteins.
The gut microbiome shows different structures between wild type mice and knockout mice, as well as clinical samples according to serum CXCL10 expression levels.
We found some genera were markedly increased in knockout mice and patients with low serum CXCL10 expression levels including Lactobacillus, Lachnospiraceae, Oscillibacter, Odoribacter, Eubacterium.
FMT from patients with low serum CXCL10 levels and healthy individuals ameliorating lung pathological damage.
Conclusions This study interpreted that CXCL10 exacerbates acute lung injury and secondary infection in influenza by inducing gut dysbiosis, suggesting that balancing the gut flora could be assistant treatments to protect from acute lung injury and secondary infections in influenza.
And IL22 may be a potential mediating factor between gut-lung axis to improve epithelial integrity.

Related Results

Correlation of Influenza Vaccination and Influenza Incidence on COVID-19 Severity and Other Perspectives
Correlation of Influenza Vaccination and Influenza Incidence on COVID-19 Severity and Other Perspectives
The pandemic of COVID-19 is evolving worldwide, and it is associated with high mortality and morbidity. There is a growing need to discuss the elements of a coordinated strategy to...
1395. Influenza B-Associated Pediatric Mortality in the US Between 2010 and 2019
1395. Influenza B-Associated Pediatric Mortality in the US Between 2010 and 2019
Abstract Background To assess the contribution of influenza B to mortality in the US pediatric population, we analyzed the propo...
U.S. utilization patterns of influenza antiviral medications during the 2009 H1N1 influenza pandemic
U.S. utilization patterns of influenza antiviral medications during the 2009 H1N1 influenza pandemic
Please cite this paper as: Borders‐Hemphill and Mosholder (2012) U.S. utilization patterns of influenza antiviral medications during the 2009 H1N1 influenza pandemic. Influenza and...
Blunt Chest Trauma and Chylothorax: A Systematic Review
Blunt Chest Trauma and Chylothorax: A Systematic Review
Abstract Introduction: Although traumatic chylothorax is predominantly associated with penetrating injuries, instances following blunt trauma, as a rare and challenging condition, ...
Burden and seasonality of medically attended influenza like illness (ILI) in Ethiopia, 2012 to 2017
Burden and seasonality of medically attended influenza like illness (ILI) in Ethiopia, 2012 to 2017
Abstract Background The influenza virus spreads rapidly around the world in seasonal epidemics, resulting in significant morbidity and mortality. In...
2647. A Study of Risk Factors for Severe Influenza in South India
2647. A Study of Risk Factors for Severe Influenza in South India
Abstract Background Severe influenza infections are associated with high hospitalization and increased mortality. The risk facto...

Back to Top