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tissue electrical polarisation influence cell–matrix interactions during lung fibrosis progression. The postholder will develop bioelectronic in vitro platforms to precisely control matrix deformation and
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be performed to identify the molecular mechanism of mitochondrial diseases and other rare neurological diseases in children and adults. The over-arching aim of the research group is to develop new
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are from outside the UK. Further details are available at www.kcl.ac.uk/nms Further information may be found at: http://www.kcl.ac.uk/physics Key responsibilities Develop high quality research in the field
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research, contribute intellectually to programme development, and ensure outputs are robust, reproducible, and positioned to inform translational and therapeutic advancement. The position requires strong wet
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explores genetic causes of neurological disorders and aim to develop therapies for these conditions with a high complementary approach, ranging from stem cell modelling to functional genomic. Information
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. The group explores genetic causes of neurological disorders and aim to develop therapies for these conditions with a high complementary approach, ranging from stem cell modelling to functional genomic
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skills and critical thinking. Experience working with cell culture, tissues and/or advanced experimental models of disease. Experience in relevant immunological, molecular and cellular techniques such as
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candidate will be supported to develop their scientific career and have an impact in the field of cancer cell plasticity. More information about our research can be found here: https://www.efremovalab.org
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of TD-GC-MS, thermal desorption, headspace analysis or volatile organic compound profiling. Experience of ion mobility mass spectrometry and/or structural lipidomics. Experience developing MRM, PRM
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environment, which enjoys an international reputation as a world-class centre of excellence. Our research plays a key role in tackling many global challenges, from reducing our carbon emissions to developing