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  1. Article ; Online: Contact-Free Co-Culture Model for the Study of Innate Immune Cell Activation During Respiratory Virus Infection.

    Lew, Zhe Zhang Ryan / Liu, Jing / Ong, Hsiao Hui / Tan, Vivian Jiayi / Luukkainen, Annika / Ong, Yew Kwang / Thong, Mark / Puan, Kia Joo / Chow, Vincent Tak Kwong / Tan, Kai Sen / Wang, De Yun

    Journal of visualized experiments : JoVE

    2021  , Issue 168

    Abstract: The early interactions between the nasal epithelial layer and the innate immune cells during viral infections remains an under-explored area. The significance of innate immunity signaling in viral infections has increased substantially as patients with ... ...

    Abstract The early interactions between the nasal epithelial layer and the innate immune cells during viral infections remains an under-explored area. The significance of innate immunity signaling in viral infections has increased substantially as patients with respiratory infections who exhibit high innate T cell activation show a better disease outcome. Hence, dissecting these early innate immune interactions allows the elucidation of the processes that govern them and may facilitate the development of potential therapeutic targets and strategies for dampening or even preventing early progression of viral infections. This protocol details a versatile model that can be used to study early crosstalk, interactions, and activation of innate immune cells from factors secreted by virally infected airway epithelial cells. Using an H3N2 influenza virus (A/Aichi/2/1968) as the representative virus model, innate cell activation of co-cultured peripheral blood mononuclear cells (PBMCs) has been analyzed using flow cytometry to investigate the subsets of cells that are activated by the soluble factors released from the epithelium in response to the viral infection. The results demonstrate the gating strategy for differentiating the subsets of cells and reveal the clear differences between the activated populations of PBMCs and their crosstalk with the control and infected epithelium. The activated subsets can then be further analyzed to determine their functions as well as molecular changes specific to the cells. Findings from such a crosstalk investigation may uncover factors that are important for the activation of vital innate cell populations, which are beneficial in controlling and suppressing the progression of viral infection. Furthermore, these factors can be universally applied to different viral diseases, especially to newly emerging viruses, to dampen the impact of such viruses when they first circulate in naïve human populations.
    MeSH term(s) 3T3 Cells ; Animals ; Cell Differentiation/drug effects ; Cells, Cultured ; Coculture Techniques ; Electric Impedance ; Epithelial Cells/drug effects ; Epithelial Cells/immunology ; Feeder Cells/cytology ; Humans ; Immunity, Innate ; Influenza A Virus, H3N2 Subtype/drug effects ; Influenza A Virus, H3N2 Subtype/immunology ; Influenza, Human/immunology ; Influenza, Human/virology ; Killer Cells, Natural/drug effects ; Killer Cells, Natural/immunology ; Leukocytes, Mononuclear/drug effects ; Leukocytes, Mononuclear/virology ; Mice ; Mitomycin/pharmacology ; Models, Biological ; Mucin 5AC/metabolism ; Nasal Mucosa/pathology ; Tubulin/metabolism
    Chemical Substances MUC5AC protein, human ; Mucin 5AC ; Tubulin ; Mitomycin (50SG953SK6)
    Language English
    Publishing date 2021-02-28
    Publishing country United States
    Document type Journal Article ; Research Support, Non-U.S. Gov't ; Video-Audio Media
    ZDB-ID 2259946-0
    ISSN 1940-087X ; 1940-087X
    ISSN (online) 1940-087X
    ISSN 1940-087X
    DOI 10.3791/62115
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  2. Article: Respiratory Viral Infections in Exacerbation of Chronic Airway Inflammatory Diseases: Novel Mechanisms and Insights From the Upper Airway Epithelium.

    Tan, Kai Sen / Lim, Rachel Liyu / Liu, Jing / Ong, Hsiao Hui / Tan, Vivian Jiayi / Lim, Hui Fang / Chung, Kian Fan / Adcock, Ian M / Chow, Vincent T / Wang, De Yun

    Frontiers in cell and developmental biology

    2020  Volume 8, Page(s) 99

    Abstract: Respiratory virus infection is one of the major sources of exacerbation of chronic airway inflammatory diseases. These exacerbations are associated with high morbidity and even mortality worldwide. The current understanding on viral-induced exacerbations ...

    Abstract Respiratory virus infection is one of the major sources of exacerbation of chronic airway inflammatory diseases. These exacerbations are associated with high morbidity and even mortality worldwide. The current understanding on viral-induced exacerbations is that viral infection increases airway inflammation which aggravates disease symptoms. Recent advances in
    Keywords covid19
    Language English
    Publishing date 2020-02-25
    Publishing country Switzerland
    Document type Journal Article ; Review
    ZDB-ID 2737824-X
    ISSN 2296-634X
    ISSN 2296-634X
    DOI 10.3389/fcell.2020.00099
    Database MEDical Literature Analysis and Retrieval System OnLINE

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  3. Article ; Online: Respiratory Viral Infections in Exacerbation of Chronic Airway Inflammatory Diseases

    Tan, Kai Sen / Lim, Rachel Liyu / Liu, Jing / Ong, Hsiao Hui / Tan, Vivian Jiayi / Lim, Hui Fang / Chung, Kian Fan / Adcock, Ian M. / Chow, Vincent T. / Wang, De Yun

    Frontiers in cell and developmental biology, 8:99

    Novel Mechanisms and Insights From the Upper Airway Epithelium

    2020  

    Abstract: Respiratory virus infection is one of the major sources of exacerbation of chronic airway inflammatory diseases. These exacerbations are associated with high morbidity and even mortality worldwide. The current understanding on viral-induced exacerbations ...

    Abstract Respiratory virus infection is one of the major sources of exacerbation of chronic airway inflammatory diseases. These exacerbations are associated with high morbidity and even mortality worldwide. The current understanding on viral-induced exacerbations is that viral infection increases airway inflammation which aggravates disease symptoms. Recent advances in in vitro air-liquid interface 3D cultures, organoid cultures and the use of novel human and animal challenge models have evoked new understandings as to the mechanisms of viral exacerbations. In this review, we will focus on recent novel findings that elucidate how respiratory viral infections alter the epithelial barrier in the airways, the upper airway microbial environment, epigenetic modifications including miRNA modulation, and other changes in immune responses throughout the upper and lower airways. First, we reviewed the prevalence of different respiratory viral infections in causing exacerbations in chronic airway inflammatory diseases. Subsequently we also summarized how recent models have expanded our appreciation of the mechanisms of viral-induced exacerbations. Further we highlighted the importance of the virome within the airway microbiome environment and its impact on subsequent bacterial infection. This review consolidates the understanding of viral induced exacerbation in chronic airway inflammatory diseases and indicates pathways that may be targeted for more effective management of chronic inflammatory diseases.
    Keywords COVID-19 ; upper airway ; epithelium ; respiratory virus ; chronic airway inflammatory diseases ; acute exacerbation ; covid19
    Language English
    Publishing country de
    Document type Article ; Online
    Database BASE - Bielefeld Academic Search Engine (life sciences selection)

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