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The Research Fellow will lead the development of a Surface-Enhanced Raman Spectroscopy (SERS) biosensor platform for rapid detection of microbial bioburden in biopharmaceutical cleaning validation
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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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We offer you We offer a fully funded PhD position in a highly interactive, multidisciplinary, and international research group at the Biozentrum. Our group brings together expertise in molecular microbiology, biophysics, as well as bioinformatics and the analysis of large datasets. Additionally,...
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bioburden in biopharmaceutical cleaning validation using a Surface-Enhanced Raman Spectroscopy (SERS) biosensor platform. Responsibilities include next-generation sequencing (NGS), qPCR-based molecular assays
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that are relevant to industry demands while working on research projects in SIT. Job Purpose The Research Fellow will lead the development of a Surface-Enhanced Raman Spectroscopy (SERS) biosensor platform for rapid
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environmental change. This fully funded project will explore design principles for whole-cell biosensors to help create robust biosensing technologies for aquatic environments. Environmental pollution in aquatic
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Spectroscopy (SERS) biosensor platform. Responsibilities include next-generation sequencing (NGS), qPCR-based molecular assays for microbial quantification and aptamer validation, and experimental support for
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platforms such as novel biosensors, gene switches, genetic closed-loop circuits, and chemical structures that interface with and actuate cellular activities, we design programmable cellular implants and
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novel biosensors, gene switches, genetic closed-loop circuits, and chemical structures that interface with and actuate cellular activities, we design programmable cellular implants and devices
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apply a novel metagenomic "biosensor" framework to investigate microbial carbon cycling in the ocean and translate this approach to studies of the gut microbiome in the context of colorectal cancer