Natural Variation And Genetic Basis Of Dengue Virus Transmission Rate In Australian Mosquitoes
Funder
National Health and Medical Research Council
Funding Amount
$680,088.00
Summary
Dengue fever outbreaks occur in Australia when infected travelers enter the country and are bitten by local mosquitoes. Here we examine the degree of genetic compatibility between mosquitoes and incoming dengue viruses that may affect disease risk for humans. We will identify the mosquito genes that determine the insect’s capacity to transmit dengue virus and develop a geographic map of transmissibility for a range of different dengue strains across Australian populations of the insect.
Mosquito-borne alphaviruses such as Ross River and chikungunya viruses cause widespread epidemics and exert extreme pressure on the public health systems of affected regions. Alphaviruses spreads to joints and triggers a severe disease in those affected. There are no effective treatments or vaccines. The project will investigate virus-host interaction at the bite site. The outcome will be new knowledge to treat infection at the mosquito bite site to prevent joint disease.
The Role Of Glycans In Arboviral Disease; From Immunomodulation To Glycotherapeutic Treatment Strategies
Funder
National Health and Medical Research Council
Funding Amount
$419,180.00
Summary
Dengue and chikungunya viruses are leading causes of emerging mosquito-transmitted (arboviral) disease worldwide. Currently there are no available vaccines or therapeutics making combatting these arboviral diseases one of our most pressing global health challenges. Preliminary evidence shows that glycan recognition is critical for disease immunopathogenesis. This project focuses on the role of viral glycans in arboviral disease with the aim of identifying and expanding on new therapeutic targets
Japanese Encephalitis Virus In Northern Australia And Papua New Guinea:its Ecology And Risk To Australia.
Funder
National Health and Medical Research Council
Funding Amount
$292,045.00
Summary
Japanese encephalitis (JE) virus is a mosquito-transmitted virus of Asia. Infection causes clinical disease in about 1 in 50 people infected, and of these, about 25% will die from a fatal encephalitis (inflammation of the brain), and a further 50% will have lifelong severe disabilities. There are over 50,000 cases annually in Asia, with about 12,000 fatalities. However, many more cases may go unrecognised. The virus normally circulates between mosquitoes and water birds and between mosquitoes an ....Japanese encephalitis (JE) virus is a mosquito-transmitted virus of Asia. Infection causes clinical disease in about 1 in 50 people infected, and of these, about 25% will die from a fatal encephalitis (inflammation of the brain), and a further 50% will have lifelong severe disabilities. There are over 50,000 cases annually in Asia, with about 12,000 fatalities. However, many more cases may go unrecognised. The virus normally circulates between mosquitoes and water birds and between mosquitoes and pigs. The World Health Organization has recognised JE as one of the most important mosquito-borne viruses because of its propensity to spread and to colonise new areas. The virus first appeared in the Torres Strait of northern Australia in 1995, causing three clinical cases of whom 2 died. This was unexpected as the nearest known focus of virus activity was in Bali, over 3000km away. The virus returned again in 1998, with a further case in the Torres Strait and the first case to occur on mainland Australia in Cape York. Both of these patients recovered. We have shown that the virus is established in Papua New Guinea (PNG), where it is spreading rapidly, and our results suggest that PNG was the source of the virus causing the outbreaks in 1995 and 1998. This project is aimed at finding out more about JE virus in PNG, particularly as it relates to spread into northern Australia. The project also seeks to investigate the potential mosquito and animal hosts in Australia that might be involved if the virus becomes established in our wildlife in Cape York. Australia is already known to have suitable mosquito vector species and suitable animal hosts in water birds and feral pigs, but the ecology is not yet understood. Thus the overall aim is to provide information on which a sound risk assessment can be based.Read moreRead less
Novel Insights Into The Pathobiology Of Alphavirus Infections
Funder
National Health and Medical Research Council
Funding Amount
$827,660.00
Summary
Infections with mosquito-borne viruses are increasing at an alarming rate worldwide. Ross River virus is endemic in parts of Australia, PNG and Pacific islands, while chikungunya virus is distributed globally and causes recurrent pandemics that involve millions of people. These viruses cause severe musculoskeletal disease for several months after infection. This project aims to establish how these viruses interact with the human host to cause disease and may provide a basis for new treatments.
Novel Use Of Fungal Entomopathogens For Sustainable Control Of Mosquito-borne Viruses
Funder
National Health and Medical Research Council
Funding Amount
$605,993.00
Summary
Mosquito-born viruses such as Dengue, Ross River and Barmah Forest are increasing in regional significance. At a broader scale, an estimated 2.5 billion people live in areas at risk of epidemic Dengue transmission. Chemical insecticides are the mainstay of current mosquito control throughout many parts of the world. However, problems of insecticide resistance, environmental contamination and risks to human health, mean that chemical pesticides have not provided a universal solution, either as ou ....Mosquito-born viruses such as Dengue, Ross River and Barmah Forest are increasing in regional significance. At a broader scale, an estimated 2.5 billion people live in areas at risk of epidemic Dengue transmission. Chemical insecticides are the mainstay of current mosquito control throughout many parts of the world. However, problems of insecticide resistance, environmental contamination and risks to human health, mean that chemical pesticides have not provided a universal solution, either as outdoor sprays, residual house sprays or as insecticide treated nets. This creates a pressing need for practical alternatives. Building on approaches and technologies developed for control of locusts in Australia and Africa, we have recently discovered that the ability of mosquitoes to transmit malaria can be substantially reduced with insect fungal pathogens used as biological pesticides. We found that exposure to biopesticide-treated surfaces reduced the number of mosquitoes able to transmit malaria 80-fold. Other supporting data from semi-field trials confirm the feasibility of infecting mosquitoes under real field conditions. Together, these results represent a significant advance in the development of a cheap and sustainable biological alternative to chemical insecticides for disease control. We now wish to extend this research to explore the potential for use of fungal pathogens in control of mosquito-borne viruses. Preliminary studies already confirm that we can infect the key mosquito species responsible for transmitting Dengue. The aim of the current project is to conduct a more comprehensive evaluation of a wider range of fungal isolates to identify strains with the greatest potential to stop transmission of mosquito-borne viruses. The longer term goal is to translate this research into a practical product. Such a product would offer a cheap, environmentally friendly disease control measure, with reduced potential for resistance evolution.Read moreRead less
New Insights Into Viral Inflammatory Disease Mechanisms And Approaches To Therapy
Funder
National Health and Medical Research Council
Funding Amount
$631,010.00
Summary
This fellowship aims to establish how viruses cause disease, including how they evade the immune response to persist and cause disease for prolonged periods. My vision is that knowing how the virus and the immune system interact to determine disease severity will assist in devising new treatments and prevention programs to lessen the impact of viral diseases in Australia and worldwide.
Development Of Early Warning Systems For Dengue Fever Based On Socio-ecological Factors
Funder
National Health and Medical Research Council
Funding Amount
$327,402.00
Summary
Global climate change has potentially serious effects on the transmission of dengue. An early warning system (EWS) based on socio-ecological factors will be developed to examine where and when outbreaks of dengue are likely to occur and how the future dengue control strategies and prevention efforts need to be applied and strengthened in Australia. This project will provide a platform for future research on developing and implementing an EWS for dengue in the Asia-Pacific region.
Release The Sterile Males: A New Direction For Mosquito Population Control Technologies
Funder
National Health and Medical Research Council
Funding Amount
$1,110,112.00
Summary
With over 40% of humans at risk from mosquito-borne disease, new environmentally friendly mosquito control tools are required. We’ve developed a novel sterile male population suppression technology – using neither radiation nor genetic modification – to produce sterile adult male mosquitoes from both male and female larvae. We will show that exposing mosquito larvae to specific RNA molecules can produce fit sterile males adult mosquitoes that can crash mosquito populations in large cage trials
Optimisation Of Wolbachia Based Control Strategies To Reduce Dengue Incidence And Disease
Funder
National Health and Medical Research Council
Funding Amount
$6,073,640.00
Summary
The project will build on recent advances in the use of Wolbachia infected mosquitoes to limit dengue transmission. Key outcomes will include improved understanding of Wolbachia spread after release, development of techniques for regional spread, understanding the epidemiology of dengue transmission in Vietnam and preparing a panel of new Wolbachia:A. aegypti strain combinations for evaluation for implementation programs.