Hepatitis C virus (HCV) and Human immunodeficiency virus (HIV) infect 200 million and 50 million people world-wide, respectively, and there are no preventative vaccines. The work outlined in this fellowship seeks to understand the structure and function of the major surface proteins of these viruses, their ability to be recognised by the immune system and to develop a novel vaccine for the prevention of HCV.
Activation Of The Respiratory Syncytial Virus Fusion Protein
Funder
National Health and Medical Research Council
Funding Amount
$582,072.00
Summary
Respiratory Syncytial Virus (RSV) is the most important viral cause of respiratory tract disease in both infants and the elderly. However, there are few available options for control, whether by vaccination or therapeutic intervention. This proposal investigates the way RSV infects cells. A clearer understanding of the molecular basis of this process should provide potential targets for new drugs that can block this process and new insights for the generation of vaccine candidates.
Detailed Investigation Of The Humoral Immune Response To HCV To Identify Diagnostic And Prognostic Serological Markers
Funder
National Health and Medical Research Council
Funding Amount
$387,466.00
Summary
The prevalence of Hepatitis C in Australia has been estimated at 242 000 people with 80% of infections acquired as a result of infection drug use. The currently available assays can be used to reliably determine the prevalence of Hepatitis C infection but provide no information regarding the incidence of infection. By thoroughly investigating the immune response generated by individuals infected with Hepatitis C we intend to identify interactions which can be used to differientiate between the d ....The prevalence of Hepatitis C in Australia has been estimated at 242 000 people with 80% of infections acquired as a result of infection drug use. The currently available assays can be used to reliably determine the prevalence of Hepatitis C infection but provide no information regarding the incidence of infection. By thoroughly investigating the immune response generated by individuals infected with Hepatitis C we intend to identify interactions which can be used to differientiate between the different stages of infection. The expected outcomes of this study include the identification of a marker of recent Hepatitis C infection. This will permit accurate epidemiological monitoring of Hepatitis C, better design of programs to control the spread, trace outbreaks and manage treatment programs. The identification of a marker capable of predicting the clinical outcome of infection would be invaluable to clinicians, because following acute infection with Hepatitis C, 20 to 30% of individuals will resolve their infection without the need for therapeutic intervention. The information obtained in this study will also lead to a better interpretation of diagnostic laboratory findings, improving our ability to provide clear and accurate reports to blood donors and consequently enhance the Australian blood supply in terms of safety and donor retention.Read moreRead less
Studies On The Activation And Immunogenicity Of The HIV-1 Glycoproteins, Gp120-gp41
Funder
National Health and Medical Research Council
Funding Amount
$606,438.00
Summary
More than 34 million people were living with HIV-1 in 2011 with ~7,000 new infections still occurring daily. A prophylactic vaccine for HIV-1 is needed to stop its transmission, however, this goal is yet to be achieved. Our proposed studies will inform the design of prophylactic HIV-1 vaccines that act by making antibodies that neutralize the virus.
Elucidating The Activation Mechanism Of The HIV-1 Envelope Glycoproteins, Gp120-gp41
Funder
National Health and Medical Research Council
Funding Amount
$636,973.00
Summary
Antiretrovirals prolong the life of HIV+ people, however toxicity and resistance issues persist. We aim to understand how the HIV surface proteins effect viral entry in order to identify new antiviral targets.
Structure And Function Of The Hepatitis C Virus Glycoproteins E1 And E2.
Funder
National Health and Medical Research Council
Funding Amount
$533,828.00
Summary
Hepatitis C virus (HCV) infects approximately 3 % of the global human population with 150,000-200,000 HCV-infected individuals currently living in Australia. Chronic HCV infection is associated with recurrent, progressively worsening liver disease, liver cirrhosis and hepatocellular carcinoma. The current therapy (interferon-ribavirin) is effective in only 40 % of patients and is often associated with severe side-effects. The mechanisms that HCV uses to replicate in liver cells is poorly underst ....Hepatitis C virus (HCV) infects approximately 3 % of the global human population with 150,000-200,000 HCV-infected individuals currently living in Australia. Chronic HCV infection is associated with recurrent, progressively worsening liver disease, liver cirrhosis and hepatocellular carcinoma. The current therapy (interferon-ribavirin) is effective in only 40 % of patients and is often associated with severe side-effects. The mechanisms that HCV uses to replicate in liver cells is poorly understood. In this project we aim to better understand how the viral glycoproteins, E1 and E2, function in the initiation of infection. In particular, we will examine how these glycoproteins bind to liver cell receptors and then mediate virus-cell membrane fusion. These processes lead to the penetration of the HCV genetic material into the cell where it is replicated. These studies are essential for the discovery of new targets for antiviral agents and vaccines.Read moreRead less