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We are analyzing https://www.nature.com/articles/srep29421.

Title:
Chlamydia psittaci infection increases mortality of avian influenza virus H9N2 by suppressing host immune response | Scientific Reports
Description:
Avian influenza virus subtype H9N2 (H9N2) and Chlamydia psittaci (C. psittaci) are frequently isolated in chickens with respiratory disease. However, their roles in co-infection remain unclear. We tested the hypothesis that C. psittaci enhances H9N2 infection through suppression of host immunity. Thus, 10-day-old SPF chickens were inoculated intra-tracheally with a high or low virulence C. psittaci strain and were simultaneously vaccinated against Newcastle disease virus (NDV). Significant decreases in body weight, NDV antibodies and immune organ indices occurred in birds with the virulent C. psittaci infection, while the ratio of CD4+/CD8+ T cells increased significantly compared to that of the lower virulence strain. A second group of birds were inoculated with C. psittaci and H9N2 simultaneously (C. psittaci+H9N2), C. psittaci 3 days prior to H9N2 (C. psittaci/H9N2), or 3 days after H9N2 (H9N2/C. psittaci), C. psittaci or H9N2 alone. Survival rates were 65%, 80% and 90% in the C. psittaci/H9N2, C. psittaci+H9N2 and H9N2/C. psittaci groups, respectively and respiratory clinical signs, lower expression of pro-inflammatory cytokines and higher pathogen loads were found in both C. psittaci/H9N2 and C. psittaci+H9N2 groups. Hence, virulent C. psittaci infection suppresses immune response by inhibiting humoral responses and altering Th1/Th2 balance, increasing mortality in H9N2 infected birds.
Website Age:
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Keywords {πŸ”}

group, psittaci, infection, psittacihn, day, article, compared, birds, google, scholar, avian, virus, immune, control, coinfection, strain, lesions, respiratory, significantly, index, chlamydia, organ, mortality, chickens, found, nature, hnc, china, influenza, significant, groups, study, disease, fig, cas, high, virulence, spleen, post, inoculated, indices, comparison, thymus, reports, host, suppression, survival, higher, severe, air,

Topics {βœ’οΈ}

nature portfolio privacy policy bmc veterinary research nature author information authors advertising commercial kits blackwell publishing language improvement recent research social media 0/ reprints g1-lineage h9n2 virus avian influenza virus reducing inf-Ξ³ secretion ndv-specific antibody levels h9n2 aggravates mortality wild bird exposure aiv h9n2/chicken/shandong/2011 anti-ndv antibody level ndv-specific antibody level ndv-specific antibodies measured long-term latent infection avian h9n2 influenza altering th1/th2 balance low-virulence strain cb3 scientific reports anti-chicken cd8-rpe specific-pathogen-free chickens cn/releasepaper/content h9n2 influenza viruses permissions anti-chicken cd4-fitc ifn-Ξ³ decreased significantly average body weights severe respiratory distress anti-chicken cd3-sprd immune organ index decreasing cd4+/cd8+ ratio received sufficient attention salivary gland mucosa bursal organ index psittaci/h9n2 group compared egg-layer chickens full size image body weight gains determine organ index loose green droppings16 newcastle disease virus privacy

Schema {πŸ—ΊοΈ}

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         description:Avian influenza virus subtype H9N2 (H9N2) and Chlamydia psittaci (C. psittaci) are frequently isolated in chickens with respiratory disease. However, their roles in co-infection remain unclear. We tested the hypothesis that C. psittaci enhances H9N2 infection through suppression of host immunity. Thus, 10-day-old SPF chickens were inoculated intra-tracheally with a high or low virulence C. psittaci strain and were simultaneously vaccinated against Newcastle disease virus (NDV). Significant decreases in body weight, NDV antibodies and immune organ indices occurred in birds with the virulent C. psittaci infection, while the ratio of CD4+/CD8+ T cells increased significantly compared to that of the lower virulence strain. A second group of birds were inoculated with C. psittaci and H9N2 simultaneously (C. psittaci+H9N2), C. psittaci 3 days prior to H9N2 (C. psittaci/H9N2), or 3 days after H9N2 (H9N2/C. psittaci), C. psittaci or H9N2 alone. Survival rates were 65%, 80% and 90% in the C. psittaci/H9N2, C. psittaci+H9N2 and H9N2/C. psittaci groups, respectively and respiratory clinical signs, lower expression of pro-inflammatory cytokines and higher pathogen loads were found in both C. psittaci/H9N2 and C. psittaci+H9N2 groups. Hence, virulent C. psittaci infection suppresses immune response by inhibiting humoral responses and altering Th1/Th2 balance, increasing mortality in H9N2 infected birds.
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      headline:Chlamydia psittaci infection increases mortality of avian influenza virus H9N2 by suppressing host immune response
      description:Avian influenza virus subtype H9N2 (H9N2) and Chlamydia psittaci (C. psittaci) are frequently isolated in chickens with respiratory disease. However, their roles in co-infection remain unclear. We tested the hypothesis that C. psittaci enhances H9N2 infection through suppression of host immunity. Thus, 10-day-old SPF chickens were inoculated intra-tracheally with a high or low virulence C. psittaci strain and were simultaneously vaccinated against Newcastle disease virus (NDV). Significant decreases in body weight, NDV antibodies and immune organ indices occurred in birds with the virulent C. psittaci infection, while the ratio of CD4+/CD8+ T cells increased significantly compared to that of the lower virulence strain. A second group of birds were inoculated with C. psittaci and H9N2 simultaneously (C. psittaci+H9N2), C. psittaci 3 days prior to H9N2 (C. psittaci/H9N2), or 3 days after H9N2 (H9N2/C. psittaci), C. psittaci or H9N2 alone. Survival rates were 65%, 80% and 90% in the C. psittaci/H9N2, C. psittaci+H9N2 and H9N2/C. psittaci groups, respectively and respiratory clinical signs, lower expression of pro-inflammatory cytokines and higher pathogen loads were found in both C. psittaci/H9N2 and C. psittaci+H9N2 groups. Hence, virulent C. psittaci infection suppresses immune response by inhibiting humoral responses and altering Th1/Th2 balance, increasing mortality in H9N2 infected birds.
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      name:Key Lab of Animal Epidemiology and Zoonosis of Ministry of Agriculture, College of Veterinary Medicine, China Agricultural University, China
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