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models to address a fundamental question in chromatin biology: How do epigenetic features contribute to the regulation of the genome? We study how chromatin drives specificity for regulating gene
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translational projects employing single-cell sequencing, immune profiling, transgenic models, and molecular biology to uncover pathomechanisms and therapeutic targets in arthritis, osteoporosis, intervertebral
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position will included tasks related to integration synthetic genetic engineering, time-lapse microscopy imaging, lab-on-chip technology and advanced computer model simulations -- El puesto de investigador
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for genotyping). Qualifications Required: Bachelor's degree in Neuroscience, molecular biology, or similar academic discipline Previous experience working with rodent models Minimum 2-year commitment Preferred
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in culture, experiments performed on cell lines); - experience in cell and molecular biology techniques (electrophoresis, western blot, spectrophotometric analyses of cellular proteins, genomics
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sugarcane using breast cancer cell lines. Evaluate the ability of extracts and isolated bioactives to inhibit ROS formation and other stress-related pathways in cell-based models. Collaborate with chemists
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for epidemiology that can be applied at the population level and also at the molecular and cellular level for biological applications. Qualifications ● Graduated with an MS degree in Computer Science, Mathematics
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of combat related orthopaedic trauma. In particular, contemporary cell / molecular biology in vitro approaches as well as clinically relevant small and large animal models of orthopaedic trauma are utilized
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apart. A degree in Chemistry, Biochemistry, Pharmacology, or a related field (or equivalent experience). Demonstrated experience in molecular modelling, simulations, and applying AI/ML techniques