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: 27.02.2026 WHEN TO APPLY:27.03-10.04.2026 WEBSITE: http://wiadomosci.sggw.pl/ https://bazaogloszen.nauka.gov.pl/ https://euraxess.ec.europa.eu/jobs KEY WORDS: molecular biology, RNA biology, bioinformatics
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, confocal microscopy) and molecular level (RNA-seq, spatial technologies) B2. Knowledge of gene manipulation techniques such as CRISPR and metabolic experimental techniques such as Seahorse, SCENITH
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a novel multi-omics approach that integrates high-throughput imaging and machine learning methods with CRISPR/Cas9 screens and saturation mutagenesis to answer central questions about the
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for hematological and solid cancers. Your position The successful candidate will have the opportunity to work with cutting-edge experimental methods, including CRISPR-Cas9, single-cell RNA and ATAC sequencing
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solid cancers. Your position The successful candidate will have the opportunity to work with cutting-edge experimental methods, including CRISPR-Cas9, single-cell RNA and ATAC sequencing, advanced high
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Website: https://hellerlab-stanford.net/(link is external) (link is external) https://med.stanford.edu/stankovic-lab.html(link is external) (link is external) How to Submit Application Materials: Please
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including single-cell genomics by next-generation sequencing, in situ single-cell analyses of DNA and RNA by Fluorescent in situ Hybridization (FISH), and CRISPR gene editing to induce genomic instability and
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. Cell culture and genetic manipulation, including lentivirus production, transduction, transfection, and CRISPR/Cas9 genome editing. 2. Live-cell imaging using confocal microscopy, along with quantitative
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) and their relationships with neighboring tissues in pathophysiological conditions. We utilize in vivo mouse genetics, live imaging, 3D organoids, genome-wide Cas9/Crispr based functional genetic
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differentiation, genetic engineering with CRISPR, disease modeling, transplantation into animal models of diabetes, biomedical engineering, bioinformatics, and single-cell sequencing technologies. Job Description