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Home NEWS Science News Immunology

Lung neuropeptide exacerbates lethal influenza virus infection

Bioengineer by Bioengineer
January 10, 2019
in Immunology
Reading Time: 3 mins read
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Researchers find that neuropeptide Y (NPY) makes influenza worse when produced by lung immune cells

Osaka, Japan – Severe influenza virus infection is characterized by a strong inflammatory response and profuse viral replication in lungs. These viruses, such as the notorious avian flu, have a high rate of death and to date there are no effective treatments. A research group led by National Institutes of Biomedical Innovation, Health and Nutrition (NIBIOHN) and Osaka University found that a peptide commonly found in the nervous system, neuropeptide Y (NPY), was critically involved in the enhancement of pulmonary inflammation and viral replication in severe influenza virus infection. The group reported that, when produced by immune cells in the lungs, NPY might hold the key to exacerbating severe influenza.

By studying the impact that NPY and its receptor Y1R have on influenza in mice, the research group has now discovered that NPY produced in lung phagocytes can aggravate influenza. Results demonstrate that the induction of suppressor of cytokine signaling 3 (SOCS3) via NPY-Y1R activation is responsible for impaired anti-viral response and promoting pro-inflammatory cytokine production, thereby aggravating the influenza virus infection. The group recently published its findings in Nature Microbiology.

“Counting NPY-positive cells revealed that NPY was increased in pulmonary phagocytes following severe influenza virus infection,” says corresponding author Yumiko Imai1. “By deactivating, or knocking out, first the NPY, followed by its Y1 receptor, and then the SOCS3, we showed that these factors enhance virus replication and lung inflammation.”

The researchers used immunofluorescence, flow cytometry, next-generation sequencers and bioinformatic analysis to examine the function of immune cells extracted from the lungs of infected mice. They also analyzed gene expression and protein levels in mice in which the key proteins were activated or deactivated and compared these levels to disease severity in the lung tissue.

“The NPY and Y1 receptor axis on lung phagocytes is activated in severe influenza and this leads to a more serious infection and poorer outcomes,” says first author Seiki Fujiwara. “Deletion of NPY improved the survival and the disease pathology of mice in severe influenza virus infection.”

The group’s research underscores the role that lung phagocytes have in determining the magnitude of the immune response to influenza, including how targeting these phagocytes may represent an approach for mitigating influenza severity.

Data from this research may contribute to the development of new methods for diagnosing influenza severity, as well as new drugs to prevent or treat severe influenza virus infection.

###

1Project Leader/Professor, Regulation for Intractable Infectious Diseases, NIBIOHN/Cross-Appointed Professor, Laboratory of Infection Systems, Institute for Protein Research, Osaka University

The article, “Pulmonary phagocyte-derived NPY controls the pathology of severe influenza virus infection” was published in Nature Microbiology at DOI: https://doi.org/10.1038/s41564-018-0289-1.

About Osaka University

Osaka University was founded in 1931 as one of the seven imperial universities of Japan and now has expanded to one of Japan’s leading comprehensive universities. The University has now embarked on open research revolution from a position as Japan’s most innovative university and among the most innovative institutions in the world according to Reuters 2015 Top 100 Innovative Universities and the Nature Index Innovation 2017. The university’s ability to innovate from the stage of fundamental research through the creation of useful technology with economic impact stems from its broad disciplinary spectrum.

Website: https://resou.osaka-u.ac.jp/en/top

Media Contact
Saori Obayashi
[email protected]
81-661-055-886

Related Journal Article

https://resou.osaka-u.ac.jp/en/research/2018/20181120_2
http://dx.doi.org/10.1038/s41564-018-0289-1

Tags: Immunology/Allergies/AsthmaInfectious/Emerging DiseasesMedicine/HealthPhysiology
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