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project is part of our current activities on developing new antibiotics based on pleuromutilins. The goal of this project is to identify a hit compound specifically targeting multi-resistant Gram-negative
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neuronal cultures and brain tissue samples will be used. Targeted identification will be achieved by e.g. cryo- immunofluorescence (cryo-CLEM) and immunogold. Cryogenic focused ion beam milling methods will
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Postdoc in Decoding Biological Nitrification Inhibition (BNI) in Cereals: Integrating Metabolomic...
conducting fieldwork Insight into BNI compounds, soil nitrogen cycling, nitrification and nitrogen use efficiency Experience with metabolomics (targeted and untargeted), high-resolution mass spectrometry data
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position is part the project: “NAT-AGRI: Use of nature-based solutions in Danish agricultural landscapes to promote biodiversity, achieve climate targets, and reduce nutrient emissions”, funded by the Novo
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-specific replication vulnerabilities that can be leveraged for therapeutic targeting and novel drug discovery. Project 2: Oncohistones, Chromatin Rewiring, and Genome Stability in Pediatric Cancer
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the Experiment grant. The candidate must have: A PhD degree in a relevant field (e.g. Molecular Biology, Neuroscience). A proven track record either in spatial transcriptomics or extracellular vesicle biology. The
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identification and population monitoring Contribute to automated approaches for tracking long-term population trends in wildlife Collaborate with colleagues on ongoing modelling and simulation work across the
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be a plus Excellent communication skills in English, both written and spoken A track record of peer-reviewed publications Soft skills: team-oriented, flexibility and adaptability, project management