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- Jagiellonian University
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clients, focusing on the generation of transgenic mouse models with CRISPR/Cas9 methodology, cloning, as well as DNA and RNA sequencing on the Oxford Nanopore Technologies platform. We are currently seeking
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Institute of Genetics and Animal Biotechnology of the Polish Academy of Sciences (formerly Institute of Genetics and Animal Biotechnology PAS) | Poland | 6 days ago
analyses; such as molecular biology experiments, including PCR, qPCR, cloning, and sequencing. 4. Supervision of the technical efficiency of laboratory equipment Desired Qualifications: 1. Organizational
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, RNA sequencing at the single-cell level, Perturb-seq, functional tests of beta cells, and advanced microscopic imaging and flow cytometry with imaging. Mastery of all these techniques is not required
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Research of Jagiellonian University (https://cbm.uj.edu.pl/ ). An opportunity to develop and test own research ideas, provided that they are aligned with the project’s general question. Support in securing
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for Brain Research of Jagiellonian University (https://cbm.uj.edu.pl/ ). An opportunity to develop and test own research ideas, provided that they are aligned with the project’s general question. Support in
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and university. Performing other duties assigned by the head of the unit, aligned with the institute’s and university’s profile and mission. Requirements for Candidates: Possession of at least a
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multidisciplinary, international team, in a very dynamic organization, with multiple opportunities for professional development, participation in courses, scientific training, support from peers, and academic
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biocompatibility and the ability to deliver multiple advanced drugs directly. The proposed advanced cardiac nanomaterial will be fabricated using an innovative method capable of producing nanostructured platforms
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a functional. A key challenge lies in determining the regularity of solutions relative to parameters. For practical applications, choosing numerical methods with optimal convergence rates should align
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technologies: melt electrowriting (MEW) for creating precise, fibrous microstructures and volumetric bioprinting (VBP) for spatially distributing multiple cell types within 3D hydrogel matrices. Proposed