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therapeutics using in vitro methods, validate them in a mouse model of MS, and decipher their mechanisms of action. In addition to performing experiments, you will develop new directions for the project, train
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or adopted, if this method of indicating career breaks is more advantageous. The period specified above may not be shortened or further extended by the competition organizer; • The project leader was not
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or adopted, if this method of indicating career breaks is more advantageous. The period specified above may not be shortened or further extended by the competition organizer; The project leader was not
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deep reading and ethnographic fieldwork. Experience in independent scholarly writing to a high level of academic content and formal presentation. Familiarity with digital humanities methods, multimedia
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therapeutics using in vitro methods, validate them in a mouse model of MS, and decipher their mechanisms of action. In addition to performing experiments, you will develop new directions for the project, train
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advanced methods such as: a. quantitative PCR (qPCR), b. Western blotting, c. next-generation sequencing approaches (e.g., RNA-seq), d. flow cytometry. Experience working with mammalian cell cultures
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, including the use of unnatural amino acids, and diverse bioconjugation methods), as well as their expression and purification. The candidate will also learn fibrillization techniques and in vitro methods
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focuses on single-cell genomics, biotechnology, and bioinformatics. The project involves transcriptomic and genomic profiling of single microbes. The post-doc will work on machine and deep learning methods
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experiments and analysing their results; 5. understanding of transcriptomic data and the methods used for their analysis; 6. good knowledge of best laboratory practices related to documentation and data
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in basic molecular biology techniques, cell culture, and immunostaining methods Familiarity with at least several advanced microscopy techniques, including confocal microscopy, spinning-disk microscopy