A Potent Anti-HIV-1 Gene Therapy Agent In A Humanised Mouse Model
Funder
National Health and Medical Research Council
Funding Amount
$1,147,139.00
Summary
We have shown that a synthetic protein called Nullbasic can protect human cells from becoming infected by the AIDS virus, HIV-1. In this project a gene therapy approach will be used to test if a human immune system modified to contain Nullbasic is protected from HIV-1 in an animal model.
Chikungunya Virus Disease; The Role Of Proteases And Their Receptors
Funder
National Health and Medical Research Council
Funding Amount
$682,716.00
Summary
Chikungunya virus (CHIKV) is a mosquito borne virus related to the Australian Ross River virus. The arthritic disease caused by these viruses is often poorly managed by current treatments. We have recently identified several proteins call proteases that circulate in the blood of infected people and promote arthritis. If successful the grant will provide new treatment options for these (and perhaps other) diseases using recently developed drugs that inhibit the activity of these proteases.
Novel Early Detection Strategy For Liver Cancer Using Hepatitis B Splice Variants To Expediate Diagnosis And Improve Treatment Outcome
Funder
National Health and Medical Research Council
Funding Amount
$943,566.00
Summary
Hepatitis B virus (HBV) causes liver cancer, which is one of the only cancers that is increasing in prevalence. We have shown that smaller versions of HBV, termed splice variants, are even more strongly associated with liver cancer- people with higher levels of the splice variants were over 3 times more likely to have liver cancer. We will find out why, by thoroughly studying how the splice variants alter the virus and the host cell to promote liver cancer.
Host Genes Controlling Flavivirus Infection: New Insights And Application For Developing Highly Effective Kunjin Replicon-based Ebola Vaccine
Funder
National Health and Medical Research Council
Funding Amount
$736,995.00
Summary
The applications is aimed at identifying new host genes controlling infection with West Nile virus and other medically important flaviviruses such as dengue and Japanese encephalitis. For this, we will use novel in vivo RNAi screening approach with virus libraries encoding artificial microRNAs (amirs) targeting whole mouse genome. We will then apply amiR technology to produce highly effective Kujniin replicon-based Ebola vaccine candidate that has shown promising results in trails in primates.
Solving Delivery Of Gene Therapy For Control Of Human Immunodeficiency Virus Infection
Funder
National Health and Medical Research Council
Funding Amount
$765,439.00
Summary
Antiretroviral therapy free control of Human Immunodeficiency Virus (HIV) infection requires control of the viral reservoir. We have a unique approach, aimed at enforcing HIV latency by targeting highly conserved regions in the viral promoter. These constructs completely silence viral transcription for long periods of time. We intend to develop & assess vectors that are specifically targeted to the reservoir and which can enforce viral latency despite immune activation or viral variation.
Improved Treatment Of Congenital Cytomegalovirus Disease Through Study Of Placental Models Of Pathogenesis
Funder
National Health and Medical Research Council
Funding Amount
$674,918.00
Summary
Congenital CMV is the second most common cause of fetal malformation in Australia, and yet most pregnant mothers do not know about it, nor how to prevent congenital CMV in their baby. It is a viral infection that can severely damage the unborn baby. Our research aims to find more about how the virus damages the baby, and whether antiviral drugs are useful in reducing infection of the baby, and also reducing damage to the baby from such infection. If successful, these studies will be the basis fo ....Congenital CMV is the second most common cause of fetal malformation in Australia, and yet most pregnant mothers do not know about it, nor how to prevent congenital CMV in their baby. It is a viral infection that can severely damage the unborn baby. Our research aims to find more about how the virus damages the baby, and whether antiviral drugs are useful in reducing infection of the baby, and also reducing damage to the baby from such infection. If successful, these studies will be the basis for clinical trials in pregnant women.Read moreRead less
Successful HIV remission and cure, where patients can live normally without daily drug therapy and risk of transmitting infectious virus, will critically depend on understanding the mechanisms that control the expression of viral messenger RNA and proteins. This project further explores the mechanisms controling poorly understood steps in the proecssing of viral mRNA that are required for HIV protein produciton, and identifies new targets and strategies to drive HIV into permanent remission.
HIV-1 Transcriptional Gene Silencing By Promoter Targeted Si/shRNAs: Uncovering Mechanisms, Optimising Delivery Systems, Assessing In Vivo Efficacy.
Funder
National Health and Medical Research Council
Funding Amount
$641,789.00
Summary
Current therapy for HIV is effective but must be taken for life. If therapy is stopped the virus comes back immediately from reservoirs not affected by current drugs. These fluctuating levels of virus are associated with increased illness and death. We are exploring a method of inducing prolonged viral latency using short double stranded RNA molecules. We propose to understand the mechanism of action of these possible therapeutics and to develop these constructs towards use in clinical trials.
A Longitudinal Study Of Natural Killer Cell Function In HIV-infected Individuals Initiating Therapy
Funder
National Health and Medical Research Council
Funding Amount
$620,176.00
Summary
HIV infected people no longer die from AIDS but suffer and die from non-AIDS conditions such as non-AIDS related cancers. We have discovered persistent abnormalities in natural killer cells in HIV patients receiving antiretroviral therapy. These cells help prevent the development of and control cancers so understanding why they are abnormal in HIV patients will help prevent early death from non-AIDS cancers.
Worldwide >360 million people have chronic hepatitis B virus (HBV) infection that imparts a 25% lifetime risk of death due to serious liver disease. Current therapies for chronic HBV reduce levels of virus replication but fail to target the stable, nuclear episome, covalently closed circular DNA (cccDNA). The current study will determine what is required to eliminate cccDNA and how current therapies for chronic HBV infection should be modified to achieve this aim.