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Field
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hydrogel-based biomimetic matrices (notably GelMA) to support the generation, maturation and functional optimization of multicellular adipose organoids, and integrate them into microfluidic platforms
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lead the development and application of advanced microscopy techniques, microfluidic approaches, and single-cell analysis methods to investigate quiescence at individual cell and population levels. Where
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Fellow with a strong passion for and experience in biosensing, microfluidics, microbiology and antimicrobial resistance (AMR). The successful candidate will join our Advanced Sensors team and contribute
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annum Apply by: 03/02/2026 Role Description We welcome applications from a Research Fellow with a strong passion for and experience in biosensing, microfluidics, microbiology and antimicrobial resistance
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microfluidics and scale-up, 3D bioprinting, and cell culture. The successful candidate will work jointly with the Pich and De Laporte research group. Your tasks Biomaterial synthesis and functionalization
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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 culture
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partners, thereby ensuring that all DCs will spend time in both academia and industry. The details of each project description and further instructions on How to Apply for them can be found at https
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internationally recognized research in organs-on-chip and droplet-based microfluidics in collaboration with research teams at several different Swedish and foreign universities. Research funding has been obtained
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Fellowship in the scope of the project entitled Microfluidic Integrated Enzyme-Mediated Nucleoside Synthesis with the Ref. 2024.16280.PEX, funded by Fundação para a Ciência e a Tecnologia. Scientific Area
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strong passion for and experience in biosensing, microfluidics and microbiology. The successful candidate will join our Advanced Sensors team and contribute to the 5-year Leverhulme Research Leadership