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to elucidate the pathways for human tooth enamel mineralization by 4D microscopy and microfluidics. We are looking for a motivated and imaginative materials chemist to drive the effort towards developing
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tooth enamel mineralization by 4D microscopy and microfluidics. We are looking for a motivated and imaginative materials chemist to drive the effort towards developing breakthrough remineralizing
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structure determination using a) cryo-Electron Microscopy b) cryo-Electron Tomography c) X-ray crystallography 3.Preferably published in techniques mentioned above A job description and person specification
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: Developing and optimizing advanced surfaces using state-of-the-art thin film technologies Characterizing prepared thin films using scanning electron microscopy and surface wetting methods Analyzing and
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We are looking to recruit a motivated, full-time Research Assistant to join Prof Menna Clatworthy in the University of Cambridge Department of Medicine (http://www.med.cam.ac.uk/clatworthy
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resolution x-ray crystallographic analyses, electron cryo microscopy (cryoEM), and cell-based fluidics studies. The group has access to a range of state-of-the-art facilities and technologies within the Centre
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a combination in vitro biophysical measurements, high resolution x-ray crystallographic analyses, electron cryo microscopy (cryoEM), and cell-based fluidics studies. The group has access to a range of
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, confocal microscopy) and molecular level (RNA-seq, spatial technologies) B2. Knowledge of gene manipulation techniques such as CRISPR and metabolic experimental techniques such as Seahorse, SCENITH
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networks (PMID:26655834, PMID:34106209, PMID:39009834 and BioRxiv. https://doi.org/10.64898/2025.12.01.691495). The importance of Arp2/3 complex subunit isoforms is evident from the observation that loss