Communicating with older people across transition points of care. This project aims to examine how health professionals, older people and their family members communicate in managing medications as older people move through transition points of care. Communication problems often occur as older people move between and within settings, often leading to harmful medication incidents. The project expects to facilitate medication safety as older people move across different settings and to facilitate ....Communicating with older people across transition points of care. This project aims to examine how health professionals, older people and their family members communicate in managing medications as older people move through transition points of care. Communication problems often occur as older people move between and within settings, often leading to harmful medication incidents. The project expects to facilitate medication safety as older people move across different settings and to facilitate cultural shifts in health care communication and opportunities for consumer involvement.Read moreRead less
Granulation of hydrophobic powders: design and control of granule structure. This unique project will further enhance Australia's established world-class excellence in granulation research, and will assist in setting up a new school of excellence in granulation at Monash University. The innovative use of normally problematic material properties to produce 'designer granules' is a clear example of a 'Frontier Technologies' that can be used to develop 'Advanced Materials' for the next generation o ....Granulation of hydrophobic powders: design and control of granule structure. This unique project will further enhance Australia's established world-class excellence in granulation research, and will assist in setting up a new school of excellence in granulation at Monash University. The innovative use of normally problematic material properties to produce 'designer granules' is a clear example of a 'Frontier Technologies' that can be used to develop 'Advanced Materials' for the next generation of agricultural, food and pharmaceutical industries, particularly for delivery of hydrophobic drugs. The innovative ideas presented in this proposal are expected to provide multiple opportunities for collaboration with national and international research institutions and pharmaceutical companies. Read moreRead less
Guiding ligands to nuclear receptors: The role of fatty acid binding proteins. Considerable recent effort has been directed towards the development of Australia as a focal point for biotechnology and drug discovery. The principal operational focus of this effort has been the identification of potent and active new chemical entities. In order for these new molecules to be most useful in the community, however, they must be active after oral administration. This project will examine the fundamenta ....Guiding ligands to nuclear receptors: The role of fatty acid binding proteins. Considerable recent effort has been directed towards the development of Australia as a focal point for biotechnology and drug discovery. The principal operational focus of this effort has been the identification of potent and active new chemical entities. In order for these new molecules to be most useful in the community, however, they must be active after oral administration. This project will examine the fundamental mechanisms by which drugs are absorbed across the cells lining the intestine and will provide insight critical to the design and development of new drugs that are both potent and orally active.Read moreRead less
Drug binding to human fatty acid binding proteins: a mechanism of cellular transport for poorly water soluble drugs. Considerable recent effort has been directed towards the development of Australia as a focal point for biotechnology and drug discovery. The principle operational focus of this effort has been the identification of potent and active new chemical entities. In order for these new molecules to be most useful in the community, however, they must be active after oral administration. Th ....Drug binding to human fatty acid binding proteins: a mechanism of cellular transport for poorly water soluble drugs. Considerable recent effort has been directed towards the development of Australia as a focal point for biotechnology and drug discovery. The principle operational focus of this effort has been the identification of potent and active new chemical entities. In order for these new molecules to be most useful in the community, however, they must be active after oral administration. This project will examine the fundamental mechanisms by which drugs are absorbed across the cells lining the intestine and will provide insight critical to the design and development of new drugs that are both potent and orally active. Read moreRead less
The role of fatty acid binding proteins in the binding and transport of lipophilic drugs. Poorly water-soluble drugs must cross the aqueous cytoplasm of intestinal cells if they are to be absorbed following oral administration. The mechanisms by which this occurs are currently unknown. We have shown that some lipophilic drugs are capable of binding to cytosolic transport proteins called fatty acid binding proteins (FABPs). We propose to use a range of physical techniques including NMR spectrosco ....The role of fatty acid binding proteins in the binding and transport of lipophilic drugs. Poorly water-soluble drugs must cross the aqueous cytoplasm of intestinal cells if they are to be absorbed following oral administration. The mechanisms by which this occurs are currently unknown. We have shown that some lipophilic drugs are capable of binding to cytosolic transport proteins called fatty acid binding proteins (FABPs). We propose to use a range of physical techniques including NMR spectroscopy, calorimetry and fluorescence firstly to identify the nature of drug binding to FABP and secondly to determine the effect of binding on drug transport.Read moreRead less