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Field
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from the principal investigator, you will conduct independent research to model adaptive oncogenesis and determine how age-related changes in the breast tissue microenvironment create selective pressures
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receptor coactivators, chromatin remodeling factors, and their downstream target genes in the development and progression of prostate cancer and breast cancer using cell culture systems, animal models, and
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independent research projects focused on the somatosensory system Conduct experiments in mice and rat models, including electrophysiology, live imaging, and behavioral studies Apply molecular biology techniques
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biology, DNA damage responses and sensitivity or resistance to radiotherapy. Radiotherapy remains a cornerstone of treatment for many cancers, including aggressive brain tumours. However, the molecular
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use for materials design. To address this challenge, the project will combine molecular dynamics-generated synthetic microstructures, physics-based forward diffraction models, and generative AI
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animal models. Their goals are to identify key molecular and immunologic pathways activated by these novel therapies that can be targeted to enhance anti-tumor immunity. You will directly work on projects
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the design of smarter diagnostics and effective treatments. The team aim to understand the fundamental biological processes involved in dementia at a molecular level – and to use that knowledge
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experimental systems – from ecosystems to microbiology and developmental biology, from evolution to cell biology, from molecular biology to systems biology, bioinformatics, and genomics. It is always an exciting
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combining field sampling with laboratory experiments and statistical modelling to quantify genetic variation in complex traits, the candidate will test whether these contrasting histories have driven
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. · Perform molecular, cellular, and in vivo experiments using genetically engineered mouse models and disease models of muscular dystrophy. · Apply genomic and biochemical approaches to define