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highly motivated PhD student to join a DFG-funded international project that investigates plant - microbiome interactions through large-scale metabolomics and other - omics platforms. Your tasks: Process
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Dortmund, we invite applications for a PhD Candidate (m/f/d): Preclinical Metabolomics You will be responsible for Researching oxidative stress within lymph nodes caused by metastatic melanoma Biochemical
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Dortmund, we invite applications for a PhD Candidate (m/f/d): Preclinical Metabolomics You will be responsible for Researching oxidative stress within lymph nodes caused by metastatic melanoma Biochemical
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rewiring in glioma. We will leverage our expertise in genetic engineering and m6A profiling, and characterize the specific metabolome and lipidome composition of glioma. We will assess the impact of m6A
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Multiple PhD Scholarships available - Cutting-edge research at the frontiers of Whole Cell Modelling
-microscopy, proteomics and metabolomics. This project will study large protein secretion systems, drug-efflux pumps and lipid transport towers to provide means to integrate spatial information and metabolic
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identify novel drug targets. They will be trained in a variety of powerful, modern analytic techniques including metabolomics, transcriptomics, and proteomics and work on advanced biological systems
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the previously identified characterisation, conduct nutritional analyses (e.g. metabolomics) of dairy products produced from differing farming practices to assess their health potential; 3) conduct a human trial
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Metabolomics Core (two Agilent 5975, one Thermo DSQ-II, one Waters G CT Premier, one Waters TQ-D, two Waters Xevo TQ-S, one Waters Xevo TQ-S, one Waters Xevo-G2-XS, one Thermo Orbitrap QE, and One Sciex 7600
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to combat these disorders. The incumbent will utilize cell and molecular biology techniques alongside electrophysiology, metabolomics, proteomics, and RNA-seq to investigate how de novo mutations in PACS1
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advanced computational tools and single-cell multi-omics data (CITE-seq, proteomics, transcriptomics, methylation, metabolomics), we aim to: 1) Identify surface molecules specific to dormant leukemic stem