Nutrition shapes the relationship between genes and health, and failure to attain dietary balance has profound biological consequences leading to disease. This Application proposes an integrated program that harnesses advances in nutritional theory, systems metabolism, and data modelling that evaluates the effects of macro- and micro-nutrients on mice, cells and humans. This will provide the scientific foundations necessary for the development of evidence-based precision nutrition.
The Elimination Of Hepatitis C As A Global Public Health Threat
Funder
National Health and Medical Research Council
Funding Amount
$7,001,475.00
Summary
In Australia over 230,000 people live with chronic HCV infection, with an estimated annual health care cost of over > $6.5 billion if left untreated. New highly effective HCV medications - direct acting antivirals (DAAs) have a cure rate of > 90%. DAAs will revolutionise HCV care - we can now stop HCV related deaths and transmission making HCV elimination possible. This Program Grant will directly contribute to the global response to HCV elimination and Australia achieving elimination by 2 ....In Australia over 230,000 people live with chronic HCV infection, with an estimated annual health care cost of over > $6.5 billion if left untreated. New highly effective HCV medications - direct acting antivirals (DAAs) have a cure rate of > 90%. DAAs will revolutionise HCV care - we can now stop HCV related deaths and transmission making HCV elimination possible. This Program Grant will directly contribute to the global response to HCV elimination and Australia achieving elimination by 2030.Read moreRead less
The development of cures, vaccines and better treatments for HIV/AIDS is an urgent global health priority. This team of seven groups in Sydney and Melbourne will study how HIV can lie dormant in some parts of the body, evading eradication by HIV therapy, as well as how the immune system responds to the virus. This will allow for design of novel vaccines and treatments. The researchers have skills in basic virology and immunology, and translating laboratory findings into human clinical trials.
For 60 years, we have had only 3 effective cancer treatments: surgery, radiation and chemotherapy, often used in combination.The last 5 years have produced a powerful fourth treatment: the patient's own immune system.The long standing collaborations and synergies of our multi-disciplinary teams have already underpinned many recent advances in immune-based therapies: we are now poised to develop several further immunotherapies and on track to test them in patients during the term of this grant.
The lymphocyte plays a vital role in our immune defence. When lymphocytes encounter a foreign invader, such as a virus, they make a series of decisions that influence the strength, type, and longevity of the immunity created. This program aims to understand how lymphocytes make decisions at the molecular level that affect cell and whole of system level behaviour. We aim to improve vaccines and understand diseases such as allergy, lupus, arthritis and leukaemia to develop novel therapies.
Antigen Presentation, Recognition And The Immune Response
Funder
National Health and Medical Research Council
Funding Amount
$14,927,045.00
Summary
This program focuses on understanding the development of immunity during infection or inflammatory diseases using a broad array of techniques to dissect the function of various immune cell types and to explore the relationship between structure and function of important cell surface molecules. These studies will improve our ability to design new generation vaccines for combating infectious diseases, controlling cancer, or limiting autoimmune or inflammatory diseases.
This proposal is for a team of researchers and clinicians to explore the molecular control of the lymphatic vasculature. This network of lymphatic vessels, located in organs throughout the body, is critical for regulation of tissue fluid and immune function. It will identify new molecular pathways controlling lymphatic vessels and their interactions with other cells in the body and identify new diagnostic approaches and molecular targets for medicines to treat human diseases including cancer.
New Interventions To Control Sexually Transmitted Infections And Their Consequences
Funder
National Health and Medical Research Council
Funding Amount
$10,807,896.00
Summary
Sexually transmitted infections are important causes of illness and death in Australia and globally. Populations particularly affected in Australia include young people, Aboriginal and Torres Strait Islander communities, and homosexual men. We have established a highly successful collaboration between two leading centres, that will discover new information about the biology of infection, and assess new clinical strategies for preventing and treating these infections and their consequences
Antigen Presentation, Recognition And The Immune Response
Funder
National Health and Medical Research Council
Funding Amount
$15,780,848.00
Summary
This program focuses on understanding the development of immune response to viruses and other infectious agents using a broad array of techniques to dissect the function of various immune cell types and to explore the relationship between structure and function of important cell surface molecules. These studies will improve our ability to design new generation vaccines for combating infectious diseases, controlling cancer, or limiting autoimmune diseases like diabetes.
Molecular Regulation Of Blood Cell Production And Function
Funder
National Health and Medical Research Council
Funding Amount
$18,330,902.00
Summary
This Program comprises an established team of investigators that have made world-class contributions to the understanding of blood cell formation and function. Research will combine novel multidisciplinary genetic/genomics approaches, expert biochemistry, cell and molecular biological techniques with translational studies in humans to provide new insights into blood cell control and novel avenues for therapies in blood cell diseases such as leukaemia and autoimmune and inflammatory disorders.