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work will involve: Design and synthesis of injectable hydrogel systems Encapsulation and controlled delivery of probiotics and bacteriophages Engineering and characterization of phage-based antimicrobial
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promising candidates for this goal, combining fast electrical control, compact device geometry, and excellent performance in a semiconductor platform. As this technology advances, one of the main remaining
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the cell response. A key innovation in this PhD project is to engineer environmentally (cell)-instructive hydrogels with controlled architecture (pore size, network interconnectivity) and mechanical
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are nanomaterials capable of mimicking the catalytic activity of natural enzymes and can be engineered to generate reactive oxygen species (ROS) locally and in a controlled manner. The position is within the Marie
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enzymes and can be engineered to generate reactive oxygen species (ROS) locally and in a controlled manner. The position is within the Marie Skłodowska-Curie Doctoral Network Implant-to-Market (i2M
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7 Jul 2026 Job Information Organisation/Company ETH Zürich Research Field Computer science » Other Engineering » Control engineering Engineering » Materials engineering Engineering » Mechanical
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, enabling new approaches for cancer treatment. A central challenge is to understand and control how different nucleic acids are co-encapsulated within a single nanoparticle and how their organization affects
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30 Jul 2026 Job Information Organisation/Company Empa Research Field Engineering » Materials engineering Engineering » Mechanical engineering Engineering » Other Researcher Profile First Stage
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18 Sep 2026 Job Information Organisation/Company ETH Zürich Research Field Chemistry » Other Environmental science » Earth science Environmental science » Other Researcher Profile First Stage
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24 Jul 2026 Job Information Organisation/Company University of Basel Research Field Engineering » Electrical engineering Engineering » Other Physics » Optics Researcher Profile First Stage