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. Experience with thermal and spectroscopic characterization techniques, particularly DSC and FTIR. Experience with intracellular delivery methods (e.g., electroporation or comparable microfluidic poration
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Instituto de Investigação e Inovação em Saúde da Universidade do Porto (i3S) | Portugal | 3 months ago
to harness organ-on-a-chip technology to study metastatic dissemination in gastric cancer. We propose a xurography-based technology to fabricate a prototype of a multi-organ-on-a-chip microfluidics platform
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SINTEF. The project aims to develop an automated high-throughput platform for physiologically relevant cell research by combining robotics, microfluidics, advanced sensors, cloud-connected software, and
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experience in mammalian cell culture, primary cell culture, microscopy and imaging-based assays. Experience with 3D bioprinting, organ-on-chip systems, microfluidic devices or engineered tissue models is
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relevant cell research by combining robotics, microfluidics, advanced sensors, cloud-connected software, and artificial intelligence. The successful candidate will become part of a multidisciplinary
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studies in microfluidic channels and real porous building materials (limestone and sandstone) at the laboratory scale under controlled environmental cycling. Using advanced imaging and characterization
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carry out the chemical modification of polymers, gels and nanogels also through flow synthesis and microfluidic techniques, as well as their chemical, physicochemical and biological characterization
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human brain organoids, biosensors, biomarker detection technologies, microfluidic systems and computational data analysis. The candidate will contribute to experimental design, data analysis, scientific
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modification, MEMS or microfluidic device assembly. Demonstrated ability to design, execute, troubleshoot and analyse complex in vitro and/or ex vivo studies using appropriate controls, quantitative endpoints
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issues that arise, and contribute intellectually to the project. For more information, visit: https://wyss.harvard.edu/focus-area/biomimetic-therapeutic-diagnostics/ What you'll do: Perform microfluidic