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manufacturing Use and further develop CRISPR (epi-)genome editing methods in CAR T cells Using cellular (e.g., FACS) and molecular (e.g., single cell analysis, next generation sequencing) methods to characterize
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ability to work in a team Desirable Experience in bioinformatics analysis of single cell data (chromatin and RNA) Experience in myeloid cell development and ontogeny Application Process The following
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combines expertise from synthetic biology, biomaterials and immunology to develop new approaches for studying and improving immune therapies. Do you have a background in cell biology, biomaterials or cancer
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, and CAR-T cell development will be highly valued, including vector design, transduction, and functional assays. Strong analytical skills with experience in flow cytometry, ELISA, molecular biology, and
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will focus on the development of advanced thermoelectric cooler designs for on-chip cooling applications within the MGICIAN Doctoral Network. The project will address model-based and data-driven design
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tandem architectures is therefore an attractive pathway for various PV applications. In this context, selenium (Se) has recently emerged as a promising wide-bandgap absorber for top cell application. It
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projects range from the analysis of basic cellular processes to clinical translation, from the application of novel biophysical approaches to the development of new imaging-related techniques and compounds
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data analysis tools and platforms, including NGS pipelines, RNA-seq, or variant calling, and a strong understanding of cell and gene therapy concepts and applications. Effective communication skills
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-man clinical trials for photoreceptor cell therapy and the successful applicant will play a key role in pre-clinical development work for this trial. This project is funded by a new UKRI MRC project
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collaboration, we are building a high-throughput single-cell analysis platform that combines microfluidics, advanced imaging and AI-based analysis to study gut microbial consortia. You will drive the development