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This PhD scholarship is for candidates interested in developing culturally inclusive AI by creating methods and datasets to align large language models with global social and legal norms. This PhD
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space electronic systems. Such antennas will potentially improve the payloads on the airborne and aerospace equipment and improve communication quality and internet access in the rural and regional areas
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Optimizing a 3D microfluidic IVD model to study cell responses to wear particles, refining culture conditions, and analysing cytotoxic and inflammatory mechanisms. Optimizing a 3D microfluidic IVD
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anti-cancer roles of these compounds via modulation of the immune system, with particular focus on effector (Teff) and regulatory (Treg) T cell populations. This project aims to identify changes in
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PhD Scholarship in ‘Using nanoparticles to enhance the immune response and improve vaccine efficacy’
to the vaccine, particularly regarding inducing a T cell response. Our lab focuses on viral sized nanoparticles as adjuvanting vaccine delivery systems to improve both the antibody mediated and cellular immune
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role in determining cell function and identity. These marks are actively modulated by different conditions including stress, lifestyle, sex and age or vaccination [2-3]. This project will systematically
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to the designated supervisor for consideration. The awarding of the PhD scholarship is contingent upon successfully passing the interview process. Basic knowledge in cell biology is highly desired. Basic knowledge in
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cells or Tregs) and immune-cell mediated inflammation. Using the immune system clear the tumours provides potentially more effective approaches than current treatments. Moreover, it may be possible to use
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RNAseq, epigenetics, multicolour flowcytometry (up to 27 simultaneous markers on cells), cell sorting, multiplex cytokine analysis (Luminex) as well as classical immunological techniques, e.g. ELISA
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This project will examine the behaviour of nanocarriers at cell/bacteria surfaces and response to biological environments and molecules (such as proteins). Research will utilize a suite of cutting