Refinement of dynamic combinatorial chemistry as a drug discovery tool. Medicinal chemistry is constantly being challenged to develop efficient methodologies for the synthesis of compounds for drug discovery. Following completion of the Human Genome project, the cloning and expression of new proteins will proceed at an accelerated rate. In the absence of biochemical knowledge of the target protein there is a growing interest in techniques that expand the structural and biological diversity of co ....Refinement of dynamic combinatorial chemistry as a drug discovery tool. Medicinal chemistry is constantly being challenged to develop efficient methodologies for the synthesis of compounds for drug discovery. Following completion of the Human Genome project, the cloning and expression of new proteins will proceed at an accelerated rate. In the absence of biochemical knowledge of the target protein there is a growing interest in techniques that expand the structural and biological diversity of compound libraries. Dynamic combinatorial chemistry is an innovative technology with the capacity for supporting the shift from focussed to diverse compound libraries. This application seeks funding to refine dynamic combinatorial chemistry into an effective drug discovery tool.Read moreRead less
Linkage Infrastructure, Equipment And Facilities - Grant ID: LE0775590
Funder
Australian Research Council
Funding Amount
$200,000.00
Summary
A single crystal X-ray diffractometer with CCD detector for structural analysis of small molecules. In recent years their have been major advances in the capacity of instrumentation to determine the crystal and molecular structure of chemical compounds and materials which in turn has resulted in a rapidly growing understanding of the relationship between the structure of molecules and their function in the design of new materials and as drugs for the treatment of disease and pain. This infrastr ....A single crystal X-ray diffractometer with CCD detector for structural analysis of small molecules. In recent years their have been major advances in the capacity of instrumentation to determine the crystal and molecular structure of chemical compounds and materials which in turn has resulted in a rapidly growing understanding of the relationship between the structure of molecules and their function in the design of new materials and as drugs for the treatment of disease and pain. This infrastructure also provides training of an international standard for undergraduate and post graduate students, thus building the skills capabilities of Australian scientists in the workforce.Read moreRead less
Linkage Infrastructure, Equipment And Facilities - Grant ID: LE0668543
Funder
Australian Research Council
Funding Amount
$280,000.00
Summary
A high resolution, high-throughput chromatographic system for separation and characterisation of complex samples. Purchase of this equipment will support innovative and collaborative research addressing three of the National Research Priority areas. For example, defining novel drug delivery systems, or the chemical components present in Australia's bioresources, addresses 'Frontier technologies for building and transforming Australian industries', particularly the priority goals of breakthrough ....A high resolution, high-throughput chromatographic system for separation and characterisation of complex samples. Purchase of this equipment will support innovative and collaborative research addressing three of the National Research Priority areas. For example, defining novel drug delivery systems, or the chemical components present in Australia's bioresources, addresses 'Frontier technologies for building and transforming Australian industries', particularly the priority goals of breakthrough science and frontier technologies. The research into trace components in food products, and on fruit fly chemistry, relates to National Research priority four 'Safeguarding Australia', with a priority goal of protecting Australia from invasive diseases and pests. Nutraceutical research addresses the goal of 'Promoting and maintaining good health'.Read moreRead less
Total chemical synthesis of a redesigned enzyme, HIV-1 PR, containing an artificial tunable catalytic apparatus. The research project proposed represents a novel approach using total chemical synthesis to study the enzyme action of the HIV-1 PR, an aspartyl protease essential for the replication of AIDS virus. The redesign of the catalytic apparatus will allow us to investigate molecular aspects of its action. The synthetic polypeptide chain will be folded and characterised for the correct folde ....Total chemical synthesis of a redesigned enzyme, HIV-1 PR, containing an artificial tunable catalytic apparatus. The research project proposed represents a novel approach using total chemical synthesis to study the enzyme action of the HIV-1 PR, an aspartyl protease essential for the replication of AIDS virus. The redesign of the catalytic apparatus will allow us to investigate molecular aspects of its action. The synthetic polypeptide chain will be folded and characterised for the correct folded structure by NMR, and assayed for enzymatic activity. It can be expected that significant new insights into the molecular basis of the properties of the HIV-1 PR will be obtained. This will be an important contribution to biomedical research.Read moreRead less
CHARACTERISATION OF NOVEL BIOACTIVES FROM AUSTRALIAN HONEY WITH THERAPEUTIC POTENTIAL. Honey from specific Australian flowering plants has been identified that contain significant therapeutic properties in wound healing and other treatments. The research project proposed will identify and fully characterise the bioactive components of selected Australian honey (Medihoney) with antibiotic and growth promoting activites. These aims will be supported by high resolution mass spectrometry interfaced ....CHARACTERISATION OF NOVEL BIOACTIVES FROM AUSTRALIAN HONEY WITH THERAPEUTIC POTENTIAL. Honey from specific Australian flowering plants has been identified that contain significant therapeutic properties in wound healing and other treatments. The research project proposed will identify and fully characterise the bioactive components of selected Australian honey (Medihoney) with antibiotic and growth promoting activites. These aims will be supported by high resolution mass spectrometry interfaced with HPLC and or affinity chip surfaces, 750 MHz NMR analysis and a range of relevant bioassays on specific organisms and cell lines. These outcomes will not only enhance the value of current honey-based products but have the potential to identify new therapeutic lead molecules.Read moreRead less
Nicotinic acetylcholine receptors as targets in inflammatory and neurodegenerative processes. The national/community benefits that are expected to arise from this research are economic and social in nature. The novel approach employed in this project to identify inflammatory pathways and regulation has the potential to provide information that is critical in the design of novel peptide/protein based drugs. With blockbuster protein-based drugs having sales in excess of $10 billion per annum this ....Nicotinic acetylcholine receptors as targets in inflammatory and neurodegenerative processes. The national/community benefits that are expected to arise from this research are economic and social in nature. The novel approach employed in this project to identify inflammatory pathways and regulation has the potential to provide information that is critical in the design of novel peptide/protein based drugs. With blockbuster protein-based drugs having sales in excess of $10 billion per annum this proposal has the potential for very significant economic benefits for Australia. Furthermore, novel therapeutic agents for inflammatory diseases would have social benefits for Australia by decreasing the number of individuals affected and thereby reducing the physical and emotional stress associated with inflammatory diseases. Read moreRead less
Applying the CCK framework to angiogenic-based therapeutics. The aim of this project is to graft peptides involved in angiogenesis-related disorders onto a mini-protein framework. The cyclic cystine knot (CCK) framework is a plant based protein framework that has unique structural properties that make it exceptionally stable. The significance of this project is that the framework has the potential to overcome the limitations that are generally associated with peptide-based therapeutics, includin ....Applying the CCK framework to angiogenic-based therapeutics. The aim of this project is to graft peptides involved in angiogenesis-related disorders onto a mini-protein framework. The cyclic cystine knot (CCK) framework is a plant based protein framework that has unique structural properties that make it exceptionally stable. The significance of this project is that the framework has the potential to overcome the limitations that are generally associated with peptide-based therapeutics, including poor stability and bioavailability. Vastly improved therapeutic leads may be produced from this approach.Read moreRead less
What is in therapeutically prescribed herbal medicines? Phytochemical characterisation of steroidal saponins from two popular nutraceuticals, False Unicorn and Tribulus terrestris. Plants containing steroidal saponins have long been used as therapeutic products, but their active constituents remain poorly characterized. This project aims to identify and structurally characterize steroidal saponins from False Unicorn and Tribulus terrestris, two popular nutraceuticals which are currently marketed ....What is in therapeutically prescribed herbal medicines? Phytochemical characterisation of steroidal saponins from two popular nutraceuticals, False Unicorn and Tribulus terrestris. Plants containing steroidal saponins have long been used as therapeutic products, but their active constituents remain poorly characterized. This project aims to identify and structurally characterize steroidal saponins from False Unicorn and Tribulus terrestris, two popular nutraceuticals which are currently marketed in Australia. Existing knowledge of these saponin constituents is surprisingly incomplete and inaccurate. Full structural elucidation will enable the development of 'standardised' herbal saponin profiles for better control of product quality and will allow alternatives for the herbs to be chosen, which cannot be undertaken until this composition is known. A phytochemical survey of Australian Tribulus terrestris will determine whether this native sub-species is suitable for commercial harvest.Read moreRead less
Novel Sodium Ion Channel Modulators From Australian Cephalopods. Many Australian cephalopods (octopuses, squids, cuttlefishes and nautiluses) use potent toxins to rapidly paralyse diverse prey and defend against predators. These toxins act by the efficient blocking of ion channels critical to the transmission of nerve impulses. Knowledge of these toxins can lead to safer and better drugs for the relief of chronic pain.
Special Research Initiatives - Grant ID: SR0354636
Funder
Australian Research Council
Funding Amount
$30,000.00
Summary
Australian Computational Molecular Science Network. Computational Molecular Science (CMS) involves the use of theory and computational methods to simulate and visualise molecular systems ranging from small atmospheric species to proteins, nucleic acids, chemical polymers and materials. It represents our most incisive expression of what we understand about the molecular basis of nature. The CMS network will integrate and cross-fertilize both fundamental and application-based expertize in molecula ....Australian Computational Molecular Science Network. Computational Molecular Science (CMS) involves the use of theory and computational methods to simulate and visualise molecular systems ranging from small atmospheric species to proteins, nucleic acids, chemical polymers and materials. It represents our most incisive expression of what we understand about the molecular basis of nature. The CMS network will integrate and cross-fertilize both fundamental and application-based expertize in molecular scale computations in the fields of nanoscience, biomaterials, biotechnology, biomedical science and environmental science. It will uncover and explore critical new interdisciplinary science and create new molecular-based paradigms that will drive advances in these fields over the next decade.Read moreRead less