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of the laboratory to coordinate proteomic analyses conducted within the framework of the “Proteostasis Rejuvenation for Healthy Human Aging” project, funded by the HEvolution Foundation. This project involves close
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specificity. Targeted proteomics enables the simultaneous quantification of large cytokine panels, offering high multiplexing at reduced variability and cost. In this project, we aim to develop a novel
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proteomics enables the simultaneous quantification of large cytokine panels, offering high multiplexing at reduced variability and cost. In this project, we aim to develop a novel, antibody-free measurement
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involving the design and synthesis of novel chemical probes for chemical proteomics and cancer epigenetics. The project lies at the interface of organic chemistry, chemical biology, and proteomics research
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these diseases, to define novel biomarkers, and to identify novel therapeutical targets. We have pioneered in the integration of genetics with omic data to identify proteomic signatures and develop novel
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, to define novel biomarkers, and to identify novel therapeutical targets. We have pioneered in the integration of genetics with omic data to identify proteomic signatures and develop novel predictive models
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Leibniz Institute for Plasma Science and Technology | Greifswald, Mecklenburg Vorpommern | Germany | 15 days ago
at the Greifswald site. Postdoctoral candidate (F/M/D) Redox-Proteomics (initially) limited to 45 months / Weekly working time 40 hours / Remuneration according to TV-L remuneration group 13 (gross salary range
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at the Greifswald site. Postdoctoral candidate (f/m/d) Redox-Proteomics (initially) limited to 45 months / Weekly working time 40 hours / Remuneration according to TV-L remuneration group 13 (gross salary range
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chronobiology and cutting-edge proteomics to identify and characterize these liver-derived signals. The overall goal is to understand how the circadian system coordinates communication between organs to maintain
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-dependent secretion of specific proteins. This project will combine expertise in chronobiology and cutting-edge proteomics to identify and characterize these liver-derived signals. The overall goal is to