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nanomedicine concepts to design and formulate lipid-based nanoparticles for the controlled co-encapsulation and delivery of multiple nucleic acid cargos. Quantitatively characterize nanoparticle structure, cargo
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on established expertise in nanoparticle synthesis and surface chemistry, this project will optimize nanomaterial design for circulation, targeting, and therapeutic performance in neuroblastoma organoids, enabling
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. Empa is a research institution of the ETH Domain. In our research group, we design mechanically robust, multi-responsive polyurethane elastomer with backbone-integrated molecular switches. Our aim is to
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. ● Intervention design and continual learning . Beyond predicting perturbation outcomes: designing interventions that steer cells toward a desired molecular state, and updating trained models as new data arrive
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), providing an international and interdisciplinary training environment connecting materials science, biology, medical devices and regulatory science. Your tasks Design and synthesize nanozymes: Develop
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. Empa is a research institution of the ETH Domain. Research project on Design, synthesis, and multiscale characterization of materials for soft robotics applications (SAM3/ESR12 – soft robotics
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. PhD Position on Nanozyme-based coating for antimicrobial implants Your tasks Design and synthesize nanozymes: Develop nanozymes, and optimize their physicochemical and catalytic properties. Develop
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employees make essential contributions to the well-being of society for a future worth living. Empa is a research institution of the ETH Domain. Research project on Design, synthesis, and multiscale
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protein design, with a focus on the development of biosensors for antibiotics. The position is available immediately or by mutual agreement. The project As part of the Swiss National Competence Center in
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, Switzerland engineers and applies advanced polymeric materials and medical devices for a range of biomedical and industrial uses. The recent focus of the group includes the development of: (i) rational design