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Field
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Engineering, and related fields, with a view to develop and optimize 3D bioprinted models, cell selection and expansion for bone models, biological and mechanical characterization of bioprinted tissues
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instability in human stem cells, disease, and cancer, using human pluripotent stem cells and targeted differentiation approaches as a primary working model. Our goal is to determine how DNA and RNA instability
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treatment, with primary applications in cancer research. The group has a strong, well-documented record of interdisciplinary collaboration, working closely with cell and molecular biologists, geneticists
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project focused on developing and applying a CTC-on-CAM platform for functional profiling of circulating tumor cells (CTCs) in lung cancer. The project integrates CTC isolation, in vitro handling
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cutting-edge solutions that enable researchers to explore complex biological systems at unprecedented resolutions while maintaining the spatial context. DanSIC is also part of CellX – The Danish Single Cell
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for the OPUS 28 call: https://ncn.gov.pl/sites/default/files/pliki/uchwaly-rady/2024/uchwala84_2024-zal1.pdf The candidate should: Know the physiology of the nervous system, molecular and cell biology
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Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Cell identity relies on correct gene expression, so the process of
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models of neuroinflammation); Excellent skills in cell culture and flow cytometry; The ability to analyze RNA-seq data (R/Python); Enthusiasm and passion for research; Doctoral degree obtained not earlier
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Scope of duties / job description: 1. structural analysis of secondary and primary cell wall polysaccharides in European ash; 2. gene expression and/or transcriptomic studies in European ash; 3
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under the supervision of Dr Roman Szczesny. Mitochondria are essential organelles found in almost all eukaryotic cells. Due to the organization of human mitochondrial DNA, the regulation of individual