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Research Topic : Virus Infection
Field of Research : Innate Immunity
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Innate Immunity (21)
Cellular Immunology (1)
Immunology (1)
Medical Infection Agents (incl. Prions) (1)
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  • Researchers (6)
  • Funded Activities (21)
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  • Funded Activity

    The Role Of A Novel Cytokine Of The Innate Immune Response In Viral Infection

    Funder
    National Health and Medical Research Council
    Funding Amount
    $344,407.00
    Summary
    Sexually transmitted infections represent a critical global health and socioeconomic problem with over 1 billion new cases per annum. I propose a world-first description of a new protein that has a protective role against herpes simplex virus (HSV) infection of female reproductive tract. This unique protein, called interferon epsilon, was discovered in our laboratory. This project will facilitate development of new therapeutic approaches of benefit in HSV-2 infection.
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    Funded Activity

    The Role Of Stellate Cells In Fibrosis And Liver Disease Progression In HIV-Hepatitis B Co-infection

    Funder
    National Health and Medical Research Council
    Funding Amount
    $157,292.00
    Summary
    Liver related mortality is the commonest cause of non-AIDS death in HIV infected individuals on treatment. With HIV, HBV liver damage is accelerated and liver-related mortality increased. Understanding how and why is critical to management. I will examine the role of hepatic stellate cells using in vitro models and directly ex vivo from infected patient biopsy tissue. I will investigate the activated of these cells by HIV and HBV infection, thus promoting scar formation with liver injury.
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    Funded Activity

    Innate Immune Functions Of The Intracellular Antibody Receptor TRIM21

    Funder
    National Health and Medical Research Council
    Funding Amount
    $408,768.00
    Summary
    The immune system can fight viral infections with antibodies, which mark viruses outside of cells for elimination by immune cells. Antibody-coated viruses try to escape elimination by hiding inside cells. This project will determine how immune cells recognise the antibody-coated viruses ‘hiding’ within them, and the defence response they launch to eliminate viral infection. Such knowledge may allow us to develop better anti-viral drugs and vaccines to fight viral diseases like the common cold.
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    Funded Activity

    PB1-F2 Is Critical To Influenza A Virus Pathogenicity Through Activation Of The Inflammasome

    Funder
    National Health and Medical Research Council
    Funding Amount
    $663,919.00
    Summary
    Fatal Influenza A virus infections are excessive inflammation. We identified the IAV protein PB1-F2 as critical in driving excessive inflammation via activating the host inflammasome complex. Our study evaluates PB1-F2-mediated inflammation contribution to inflammatory responses. Identifying PB1-F2 in emerging IAV strains is invaluable in aiding health policy makers to quickly assess fatal IAV pandemics. Our research will potentially identify treatment targets towards reducing this inflammation
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    Funded Activity

    Age-dependent Regulation Of Type 2 Immunity By Dermal Innate Lymphoid Cells

    Funder
    National Health and Medical Research Council
    Funding Amount
    $609,281.00
    Summary
    Type 2 immune responses are critical for the defense against worm infections, but can also cause allergic reactions. How type 2 immunity is regulated is poorly understood. The aim of this application is to define the function of a newly discovered skin immune cell population, dermal type 2 innate lymphoid cell, in cutaneous worm infections and allergies. We anticipate that our studies will aid in the development of strategies to prevent or treat skin allergies and parasitic infections.
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    Funded Activity

    Defining The Interaction Of HIV With The Interferon System In Initial Mucosal Infection

    Funder
    National Health and Medical Research Council
    Funding Amount
    $867,716.00
    Summary
    Very early after virus exposure, immune cells secrete interferons that help limit the spread of viruses within the body. We will investigate the complex interplay between HIV and the interferon system, especially how HIV inhibits the early induction of interferon to aid its spread and then how the body later restores the interferon response. We will also examine how HIV manipulates the interferon system in order to persistent latent reservoirs within tissues.
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    Funded Activity

    Type I Interferon Signalling In Bacterial Infection

    Funder
    National Health and Medical Research Council
    Funding Amount
    $738,274.00
    Summary
    Infectious diseases are a leading cause of death in Australia. Activation of disease-fighting inflammasomes sets in motion rapid immune defenses against pathogens. In this project, we explore how cell-cell communication molecules known as type I interferons communicate with inflammasomes to achieve the best outcome in the body in response to deadly bacterial infection. Understanding how these signals communicate with one another could reveal new ways to fight infectious diseases.
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    Funded Activity

    Production Of Interferon Lambda By Dendritic Cell Subsets And Role In Adjuvant Effects Of Poly I:C

    Funder
    National Health and Medical Research Council
    Funding Amount
    $396,541.00
    Summary
    This proposal describes the identification of specific cells in mouse and humans that produce the anti-viral compound interferon-lambda. We propose to further characterise the mechanisms that induce interferon-lambda expression by these cell types and to decipher how this is controlled at the genetic level. We also aim to determine how the production of interferon lambda by these cell types can influence the immune response to viral infection.
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    Funded Activity

    Where It All Begins- Exploring Dendritic Cell Control Of Viral Infection And Cell Development In The Bone Marrow Of Mice And Man.

    Funder
    National Health and Medical Research Council
    Funding Amount
    $96,335.00
    Summary
    The bone marrow (bm) is the birthplace of all blood cells that fight infection in the body. Dendritic cells (DC), essential for starting immune responses, are found in the bm but the exact types and their functions are unknown. I plan to investigate the DC types that reside in the bm and explore their role in inducing immune responses and in influencing the development of cells from the bm with potential attributable benefits for stem cell transplant and vaccine design.
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    Funded Activity

    Control Of Combined Simian-human Immunodeficiency Virus Infection Utilising NK Cells Mediating Antigen-specific Antibody Dependent Cellular Cytotoxicity - A Novel Vaccine Modality

    Funder
    National Health and Medical Research Council
    Funding Amount
    $432,587.00
    Summary
    Recently, progress was made in developing a vaccine against HIV. Our laboratory was selected to join a global collaboration trying to elucidate the key to this success. Attention has focused on non-neutralizing antibodies and our laboratory has developed a unique expertise in detecting such immune responses. This research will define, purify and manufacture these antibodies and test their ability to prevent HIV in animals with the ultimate aim of producing a vaccine for human use.
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