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(Science Advances 2024, doi:10.1126/sciadv.adn3448 ) Microfluidic models of pH and oxygen gradients in tumors (bioRxiv 2025, doi:10.1101/2025.07.05.663284 ) Tumor microenvironment acidosis favors
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and selectivity of obtained biosensors; validation of electronics setups. Scout for- and test non-trivial sensor readout mechanisms and schemes, possibly combining sensors with microfluidic systems, etc
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Job Purpose You will contribute to a project focused on developing advanced microfluidic platforms for high throughput screening and sorting of cells or droplets. The platform will consist
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candidate will collaborate with INL’s engineering team and international partners such as IZM-Fraunhofer, driving innovation in graphene/CMOS and microfluidic integration technologies. The selected candidate
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project MetaExplore, coordinated by the University of Cambridge (UK) (https://metaexplore.eu/ ). MetaExplore has been set up to provide young researchers with hands-on research experience and formal
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and tissues. iPSC models with focus on adipocytes / adipose tissue. In vitro transcription, lipid nanoparticle formulation, microfluidic mixing and process optimisation. Designing, delivery and
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to recruit a research assistant to study various human diseases using an organ/organoid-on-a-chip approach. Applicants with a strong background in designing and fabricating microfluidic devices and cell
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to identify novel drugs for repurposing as ALS therapeutics. We also generated a microfluidic device enabling the study of axonal RNP granules as well as the functionality of neuromuscular junctions. Here, we
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and fabrication of microfluidic systems, with demonstratable skills in sensors, micro-fabrication, electronics and programming. We are looking for a self-motivated person, able to organise their own
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-occurring signals using phospho-proteomics. Proteins that are potential hubs of signal integration will be characterized through molecular- and biochemical methods. Using microfluidics coupled with advanced