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expression yields of proteins with noncanonical amino acids. The work will include generation of DNA libraries, development of cell-free expression systems for screening of incorporation of noncanonical amino
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Postdoctoral studies, employing Bioinformatic gene-expression analysis in Neurobiology (scholarship)
Factor (NGF) via encapsulated cell (EC Biodelivery) or cholinesterase inhibitors (ChEI’s) towards Alzheimer’s disease (AD) therapy. We aim to further our work by performing in-depth gene expression
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in mouse models and cell cultures. Analyze and interpret omics data using bioinformatic pipelines in Python and R. Perform experiments in cell culture and animal models to validate the findings
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Postdoctoral studies, employing Bioinformatic gene-expression analysis in Neurobiology (scholarship)
Factor (NGF) via encapsulated cell (EC Biodelivery) or cholinesterase inhibitors (ChEI’s) towards Alzheimer’s disease (AD) therapy. We aim to further our work by performing in-depth gene expression
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School of Engineering Sciences at KTH Job description The research project concerns the development and use of MINFLUX single-molecule microscopy for cellular imaging and dynamic studies
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Conservation D. How plant cell shape and tissue structure help cells stick together E. DETERMINER - Determining appropriate monitoring frequency for phytoplankton F. Predicting bacterial protein expression
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The Institute of Biomedicine is involved in both research and education. In both of these areas, we focus on fundamental knowledge of the living cell – what it consists of, how it works, how its
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learning packages (e.g. PyTorch, Keras) Experience with HPC and scientific workflow management tools (e.g. Nextflow, Snakemake) Experience with single-cell data analysis (e.g scanpy, scvi), and/or spatial
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genetically manipulated using CRISPR technology, in vitro. They will analyze cells and tumors through imaging, next generation DNA sequencing, single cell RNA sequencing, and other molecular techniques
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: The focus of the research is to understand the molecular and cellular mechanisms underlying the development of the spinal cord and the consequences of abnormal development for animal behaviour using the mouse