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Scheme : Linkage Projects
Socio-Economic Objective : Diagnostics
Research Topic : VACCINES
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  • Funded Activity

    Linkage Projects - Grant ID: LP0348908

    Funder
    Australian Research Council
    Funding Amount
    $80,699.00
    Summary
    Innovation Management Strategies and Practices to Accelerate the Commercialisation Process in the Biotechnology Industry. The innovation cycle is a complex and misunderstood area of management, particularly in the Biotechnology Industry where the innovation cycle can take up to 15 years. The management literature provides anecdotal information, however, lacks theoretical models which provide guidance to Managers on how to shorten the innovation process. Therefore, the aim of this PhD research, .... Innovation Management Strategies and Practices to Accelerate the Commercialisation Process in the Biotechnology Industry. The innovation cycle is a complex and misunderstood area of management, particularly in the Biotechnology Industry where the innovation cycle can take up to 15 years. The management literature provides anecdotal information, however, lacks theoretical models which provide guidance to Managers on how to shorten the innovation process. Therefore, the aim of this PhD research, which is "a world first", is to develop and test an innovation cycle model through quantitative and qualitative research. Expected outcomes include developing a valid and reliable model for measuring and predicting relationships between innovation practice and innovation performance and developing case studies for teaching purposes.
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    Funded Activity

    Linkage Projects - Grant ID: LP0346951

    Funder
    Australian Research Council
    Funding Amount
    $69,099.00
    Summary
    Advanced technology for production of foreign proteins in plant cell and organ cultures. The aim of this project is to develop new technology for in vitro production of pharmaceutical proteins using plant tissue culture. Animal proteins such as antibodies are currently being produced using recombinant plant systems in bioreactors; however, transient gene expression using genetically-modified viruses has a range of potential benefits for substantially increasing foreign protein titres. Because vi .... Advanced technology for production of foreign proteins in plant cell and organ cultures. The aim of this project is to develop new technology for in vitro production of pharmaceutical proteins using plant tissue culture. Animal proteins such as antibodies are currently being produced using recombinant plant systems in bioreactors; however, transient gene expression using genetically-modified viruses has a range of potential benefits for substantially increasing foreign protein titres. Because viruses rapidly infect plant tissues and can be amplified to extremely high levels, this new method for in vitro foreign protein synthesis has considerable promise. This project will extend the existing science of plant tissue culture into new areas with commercial potential.
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    Funded Activity

    Linkage Projects - Grant ID: LP0347751

    Funder
    Australian Research Council
    Funding Amount
    $69,099.00
    Summary
    Novel Hydrogels for Bioseparations in Clinical Applications. The project aims to design and synthesise new highly swollen hydrophilic membranes for use in biological separation processes and purifications such as the removal of viruses from blood. Typical membrane problems like membrane fouling or low flux should be minimized by a narrow pore size distribution. The regular nano-patterning should be obtained by molecular impriniting technique. Novel thermoresponsive polymers, which will be polyme .... Novel Hydrogels for Bioseparations in Clinical Applications. The project aims to design and synthesise new highly swollen hydrophilic membranes for use in biological separation processes and purifications such as the removal of viruses from blood. Typical membrane problems like membrane fouling or low flux should be minimized by a narrow pore size distribution. The regular nano-patterning should be obtained by molecular impriniting technique. Novel thermoresponsive polymers, which will be polymerized via controlled free radical polymerization techniques, will be used as biocompatible membrane material.
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    Funded Activity

    Linkage Projects - Grant ID: LP0454089

    Funder
    Australian Research Council
    Funding Amount
    $124,000.00
    Summary
    New Methods for Directed Molecular Evolution of Novel Protein Functions. Novel ribosome-based techniques can be used to carry out test-tube evolution of proteins with new structures and functions. The methods rely on (a) physical association of individual nucleic acid molecules with the particular protein molecules they encode, (b) selection of proteins with new functions, and (c) recovery of the attached genetic code. This project will address several issues that currently limit use of these fr .... New Methods for Directed Molecular Evolution of Novel Protein Functions. Novel ribosome-based techniques can be used to carry out test-tube evolution of proteins with new structures and functions. The methods rely on (a) physical association of individual nucleic acid molecules with the particular protein molecules they encode, (b) selection of proteins with new functions, and (c) recovery of the attached genetic code. This project will address several issues that currently limit use of these frontier technologies for evolution of new protein products that have a wide range of practical applications.
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    Showing 1-4 of 4 Funded Activites

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