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achievements. On the contrary, we will be seeking to significantly develop our research and education and, critically, our engagement with practice. We are conscious that business schools are experiencing
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of seed gene networks”. This project aims to use reverse genetics, cross-species complementation and single cell next-generation sequencing approaches to investigate how the gene networks that regulate
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reverse translation. ● Design and analyze multi-omic experiments, with a primary focus on understanding COPD disease biology from preclinical models and patient samples. ● Identify and integrate relevant
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, conducting field trials of such interventions is challenging due to complex logistics and uncertain outcomes. We aim to develop novel methodological strategies that can reduce the resource requirements
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identified potential therapies to: Purge cells of deleterious mtDNA molecules (PMID: 34873176; 35478201; 38402076) Reverse mtDNA loss (PMID: 26760297 and manuscript submitted). Building on these advances
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the origin of seed gene networks”. This project aims to use reverse genetics, cross-species complementation and single cell next-generation sequencing approaches to investigate how the gene networks
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overall logistic support; ii. Support for the writing of project progress reports, policy brief and other publications; iii. Support for the dissemination of knowledge, including the organisation of public
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maritime logistics network. You will assist in the planning, coordination, and execution of the project, manage research resources, and contribute to the dissemination of research findings through
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techniques like quartz crystal microbalance with dissipation (QCM-D), surface tension measurements, zeta potential, dynamic light scattering (DLS), reverse-phase HPLC (RP-HPLC), and FTIR. Apply machine
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understood, modeled, and ultimately reversed or rebuilt using bioengineering and synthetic biology approaches. The successful candidate will: Investigate mechanisms of T-cell development, aging, and thymic