scholarly journals Etiology, seasonality, and clinical characterization of viral respiratory infections among hospitalized children in Beirut, Lebanon

2016 ◽  
Vol 88 (11) ◽  
pp. 1874-1881 ◽  
Author(s):  
Mayda Finianos ◽  
Randi Issa ◽  
Martin D. Curran ◽  
Claude Afif ◽  
Maryam Rajab ◽  
...  
2021 ◽  
Vol 11 (1) ◽  
Author(s):  
A. E. Tozzi ◽  
F. Del Chierico ◽  
E. Pandolfi ◽  
S. Reddel ◽  
F. Gesualdo ◽  
...  

AbstractDespite great advances in describing Bordetella pertussis infection, the role of the host microbiota in pertussis pathogenesis remains unexplored. Indeed, the microbiota plays important role in defending against bacterial and viral respiratory infections. We investigated the nasopharyngeal microbiota in infants infected by B. pertussis (Bp), Rhinovirus (Rv) and simultaneously by both infectious agents (Bp + Rv). We demonstrated a specific nasopharyngeal microbiome profiles for Bp group, compared to Rv and Bp + Rv groups, and a reduction of microbial richness during coinfection compared to the single infections. The comparison amongst the three groups showed the increase of Alcaligenaceae and Achromobacter in Bp and Moraxellaceae and Moraxella in Rv group. Furthermore, correlation analysis between patients’ features and nasopharyngeal microbiota profile highlighted a link between delivery and feeding modality, antibiotic administration and B. pertussis infection. A model classification demonstrated a microbiota fingerprinting specific of Bp and Rv infections. In conclusion, external factors since the first moments of life contribute to the alteration of nasopharyngeal microbiota, indeed increasing the susceptibility of the host to the pathogens' infections. When the infection is triggered, the presence of infectious agents modifies the microbiota favoring the overgrowth of commensal bacteria that turn in pathobionts, hence contributing to the disease severity.


Author(s):  
Valentin Sencio ◽  
Marina Gomes Machado ◽  
François Trottein

AbstractBacteria that colonize the human gastrointestinal tract are essential for good health. The gut microbiota has a critical role in pulmonary immunity and host’s defense against viral respiratory infections. The gut microbiota’s composition and function can be profoundly affected in many disease settings, including acute infections, and these changes can aggravate the severity of the disease. Here, we discuss mechanisms by which the gut microbiota arms the lung to control viral respiratory infections. We summarize the impact of viral respiratory infections on the gut microbiota and discuss the potential mechanisms leading to alterations of gut microbiota’s composition and functions. We also discuss the effects of gut microbial imbalance on disease outcomes, including gastrointestinal disorders and secondary bacterial infections. Lastly, we discuss the potential role of the lung–gut axis in coronavirus disease 2019.


Author(s):  
Sinha Pranay ◽  
Katherine Reifler ◽  
Michael Rossi ◽  
Manish Sagar

Abstract Detection of diverse respiratory viruses in Boston was around 80% lower after practices were instituted to limit COVID-19 spread compared to the same time period during the previous five years. Continuing the strategies that lower COVID-19 dissemination may be useful in decreasing the incidence of other viral respiratory infections.


2016 ◽  
Vol 35 (10) ◽  
pp. 1057-1061 ◽  
Author(s):  
Charlotte Buehler Cherry ◽  
Marie R. Griffin ◽  
Kathryn M. Edwards ◽  
John V. Williams ◽  
Ana I. Gil ◽  
...  

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