Protecting Hyposplenic Children And Adults: Identifying Optimal Immunisation Regimens
Funder
National Health and Medical Research Council
Funding Amount
$472,044.00
Summary
Children and adults without normal spleen function are at massively increased risk of overwhelming infection with the pneumococcus bacteria, with 200 times the risk of death from sepsis compared with the normal community. Poor spleen function can be due to an absent spleen (eg after surgery following a car accident) or an underlying medical condition (eg thalassaemia or cancer therapy). Thousands of Australians are affected by this condition and need extra protection from daily antibiotics and a ....Children and adults without normal spleen function are at massively increased risk of overwhelming infection with the pneumococcus bacteria, with 200 times the risk of death from sepsis compared with the normal community. Poor spleen function can be due to an absent spleen (eg after surgery following a car accident) or an underlying medical condition (eg thalassaemia or cancer therapy). Thousands of Australians are affected by this condition and need extra protection from daily antibiotics and additional immunsiations against pneumococcus. A new vaccine against pneumococcus was introduced for Australian infants routinely in 2005 and has prevented many from developing pneumococcal meningitis, sepsis and pneumonia. We wish to see whether this new vaccine, when used with the older existing pneumococcal vaccine, will better protect older children and adults with poor spleen function from the devastating effects of pneumococcus. We will compare different ways of using these vaccines to try to identify the most protective vaccination plan for this vulnerable group of Australians.Read moreRead less
Genetic Dissection Of The Biogenesis And Function Of Type IV Fimbriae Of Pseudomonas Aeruginosa
Funder
National Health and Medical Research Council
Funding Amount
$407,545.00
Summary
Pseudomonas aeruginosa is a common bacterium which causes serious life-threatening infections of individuals with cystic fibrosis, AIDS or who have suffered severe burns or are undergoing cancer chemotherapy. This pathogen, and a number of other important infectious bacteria use surface filaments, called fimbriae, like grappling hooks to attach to the cells of the body and to move across host tissues. These fimbriae are produced in response to environmental conditions, and are assembled by a pro ....Pseudomonas aeruginosa is a common bacterium which causes serious life-threatening infections of individuals with cystic fibrosis, AIDS or who have suffered severe burns or are undergoing cancer chemotherapy. This pathogen, and a number of other important infectious bacteria use surface filaments, called fimbriae, like grappling hooks to attach to the cells of the body and to move across host tissues. These fimbriae are produced in response to environmental conditions, and are assembled by a process that is also used in the export of toxins and other pathogenic molecules. This project will characterise genes which specify and control this system, as a means to design better treatments against such bacteria, many of which are resistant to antibiotic treatment.Read moreRead less
Mechanisms Of Virally-induced Immunosuppression: Effects On DC-NK Networks
Funder
National Health and Medical Research Council
Funding Amount
$566,308.00
Summary
Cytomegalovirus (CMV) infection induces immunosuppression that often results in adverse clinical outcomes. Our previous work established that dendritic cells (DC), cells involved in the initiation of immune responses, are a principle target for CMV. This proposal will test the hypothesis that CMV-induced immunosuppression is mediated by viral interference with DC. Understanding the mechanisms involved in the induction of immunosuppression is a crucial step towards developing better therapies.
Identifying And Characterising The Molecular Determinants Of Fungal Pathogenesis
Funder
National Health and Medical Research Council
Funding Amount
$315,375.00
Summary
Fungi which infect humans represent one of the fastest growing public health problems. Like bacteria, fungi can pose a serious threat to infected individuals. This is especially true for individuals whose immune system is compromised in any way due to the direct action of another disease such as AIDS, treaments for diseases like cancer or treatment to prevent rejection in organ transplants. The problem is compounded by the lack of safe and effective treament for fungal infections. Many pathogeni ....Fungi which infect humans represent one of the fastest growing public health problems. Like bacteria, fungi can pose a serious threat to infected individuals. This is especially true for individuals whose immune system is compromised in any way due to the direct action of another disease such as AIDS, treaments for diseases like cancer or treatment to prevent rejection in organ transplants. The problem is compounded by the lack of safe and effective treament for fungal infections. Many pathogenic fungi are capable of growing in two very different forms. Usually only one of these forms is pathogenic and causes disease. Therefore, the genes which keep the fungus in the pathogenic form are important factors for infection. By understanding how fungi are capable of infection and avoiding the immune system, good practices and treatments can be development for these life threatening infections.Read moreRead less
Investigating The Interface Between Host Innate Immune Cells And A Fungal Pathogen
Funder
National Health and Medical Research Council
Funding Amount
$578,085.00
Summary
Fungi which infect humans are a major health problem, especially for those with compromised immune systems (eg. AIDS, transplant and cancer patients). These fungi cause disease by evading the immune system whilst deriving nutrients for growth. Some fungi evade the immune system by residing within host cells; a hostile and nutrient poor environment. This project will study a pathway that we have shown is required for growth inside host cells. This knowledge will open new avenues for treatment.
The Role Of Fatty Acid Metabolism In Pathogenicity.
Funder
National Health and Medical Research Council
Funding Amount
$540,075.00
Summary
Fungi which infect humans are a major health problem, especially for those with compromised immune systems (eg. AIDS, transplant and cancer patients). Pathogenic fungi must evade the host s immune system whilst deriving nutrients for growth. Some fungi evade the immune system by residing within host cells. This poses significant challenges to growth due to the nutrient poor environment. By understanding how these fungi adapt to growth inside host cells, new avenues for treatment will emerge.
Molecular Mechanisms Of Intracellular Growth, Survival And Pathogenicity
Funder
National Health and Medical Research Council
Funding Amount
$335,816.00
Summary
Fungi which infect humans are a major health problem, especially for those with compromised immune systems (eg. AIDS, transplant and cancer patients). These fungi cause disease by evading the immune system whilst deriving nutrients for growth. Some fungi evade the immune system by residing within host cells; a hostile and nutrient poor environment. This project will study a pathway that we have shown is required for growth inside host cells. This knowledge will open new avenues for treatment.
Activated Dendritic Cell Monoclonal Antibodies As Therapeutics To Prevent Graft Versus Host Disease
Funder
National Health and Medical Research Council
Funding Amount
$432,750.00
Summary
A New Therapy to Prevent Graft versus Host Disease in Bone Marrow Transplantation Bone marrow transplants often fail due to the immune reaction of the grafted donor cells against the patient (graft versus host disease). Current treatments to prevent this do not always work and have serious side-effects or other disadvantages.The immune reaction is induced by activated dendritic cells which are the primary stimulators of the body's defences against foreign invaders. We have developed antibodies i ....A New Therapy to Prevent Graft versus Host Disease in Bone Marrow Transplantation Bone marrow transplants often fail due to the immune reaction of the grafted donor cells against the patient (graft versus host disease). Current treatments to prevent this do not always work and have serious side-effects or other disadvantages.The immune reaction is induced by activated dendritic cells which are the primary stimulators of the body's defences against foreign invaders. We have developed antibodies in mice that react with human activated dendritic cells and prevent them from inducing immune responses in the test-tube. These antibodies are also likely to be effective in patients, but cannot be used in their present form because mouse antibodies induce an undesirable immune response in humans. We therefore plan to convert them to resemble human antibodies (antibody engineering). Antibodies that react with other types of cell in the body are already used to treat or prevent a variety of conditions, including graft versus host disease, but no one has developed a therapeutic antibody against activated dendritic cells. We are applying to the NHMRC for funding to engineer our antibodies and to test them in test tube experiments and also in mouse models of graft versus host disease. We also plan to study the changes in blood levels of activated dendritic cells in bone marrow transplnt patients. This will provide information on the best time to use our new therapeutic antibodies to prevent graft versus host disease. The aim of this grant application will have been achieved if, after three years, we have a new antibody ready for testing in bone marrow transplant patients.Read moreRead less
Analysis Of A Chemosensory Complex That Controls Twitching Motility And Virulence In Pseudomonas Aeruginosa
Funder
National Health and Medical Research Council
Funding Amount
$346,250.00
Summary
Pseudomonas aeruginosa is a common bacterium which causes serious life-threatening infections of individuals with cystic fibrosis, AIDS or who have suffered severe burns or are undergoing cancer chemotherapy. Infection by this pathogen requires the controlled expression of a large number of virulence factors including extracellular enzyme, toxins and structures for the attachment and colonisation of host tissues. We have identified a complex multicomponent regulatory system which coordinates the ....Pseudomonas aeruginosa is a common bacterium which causes serious life-threatening infections of individuals with cystic fibrosis, AIDS or who have suffered severe burns or are undergoing cancer chemotherapy. Infection by this pathogen requires the controlled expression of a large number of virulence factors including extracellular enzyme, toxins and structures for the attachment and colonisation of host tissues. We have identified a complex multicomponent regulatory system which coordinates the expression of many of the virulence determinants of this pathogen. This project aims to dissect the intermolecular interactions and signalling events which input into, occur within, and output from this regulatory system. This knowledge will provide a platform for developing rational strategies for the production of new antimicrobials for fighting infections by this and related pathogens.Read moreRead less
The Immunoregulatory Domains And Binding Interactions Of Human Respiratory Syncytial Virus Non-structural Proteins
Funder
National Health and Medical Research Council
Funding Amount
$484,051.00
Summary
Human respiratory syncytial virus (HRSV) is the leading cause of lower respiratory tract disease in infants and yet there are no vaccines available. HRSV exacerbates disease by interfering with the innate immune response. We aim to establish the mechanism by which this occurs by identifying the cellular-viral protein interactions involved, and by identifying the specific regions of the viral proteins responsible. This information will allow targeted vaccines and antivirals to be developed.