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involved in exploring genomic data generated on primary leukemic samples, using computational methods. We are interested in specific features resulting from chromosome (re)organization and their functional
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differentiating and characterizing iPSC-derived microglia to lead our microglia-focused programs in AD and other neurodegenerative/neurological models. The role will drive studies in advanced co-cultures and
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disease modelling Investigating the role of non-coding RNAs in retinal development Understanding light-regulated pathways in retinal cells Applying cutting-edge techniques like single-cell RNA sequencing
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the biological behaviour of recipient cells, including their metabolism, migratory capacity, and sensitivity to cell death. Through this work, we strive to clarify the role of EVs in the TME and to
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leukemias and other neoplasms. They could play a causal role in the development of the disease and be related to its early onset, patient prognosis and the effect of therapy. The description of novel germline
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micropatterning of hard tissues (teeth and bones). To achieve our scientific objectives, we use comprehensive methodological approaches including single-cell RNA-sequencing, spatial transcriptomics, genetically
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the past 7 years, AND have worked in research for at least 2 years of work, within the last 3 years, outside the Czech Republic (with a workload equivalent to at least 0.5 full-time employment) Alternatively
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, as the rigorous physical frameworks that have pervaded all other fields of science and engineering have yet to make their impact on modern neuroscience. The other main aim of our group is to use
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are seeking a talented and motivated candidate to join our team to pursue the mechanisms and functions of primary cilia. The primary cilium is an antenna-like organelle that has emerged as a fundamental
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within the past 7 years, AND have worked in research for at least 2 years of work, within the last 3 years, outside the Czech Republic (with a workload equivalent to at least 0.5 full-time employment