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program focused on biology or therapeutics of arthritis . Areas of particular interest, include, but are not limited to cellular and molecular mechanisms of joint disease in humans and/or animal models
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levels. Presently, our team consists of a principal investigator, two research engineers, a postdoctoral scholar and 3 MSc students. Our lab is located at the Division of Molecular Hematology , Department
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are announcing the position as DDLS PhD student in Data driven cell and molecular biology covers research that fundamentally transforms our knowledge about how cells function by peering into their molecular
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animal models of hemorrhagic shock and ischemia-reperfusion injury. The research also comprises methods such as immunoblotting, ELISA, real-time PCR, biochemical assays and flow cytometry. The selectee
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must have strong understanding of genetics and molecular biological techniques, coupled with demonstrated bioinformatic skills. Experience in analyses of ChIP-seq and RNA-seq data would be an asset. JOB
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models remain a limiting factor in moving to a quantitative scale. Molecular simulation has benefited from recent advances in machine learning and generative artificial intelligence to such an extent
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. * Knowledge of general principles in cell/molecular biology. * Experience in standard cell/molecular biology techniques, such as Western blotting and PCR. Essential Duties: * Research Development and Execution
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techniques such as cell culturing, drug treatment response profiling, mesoscale analysis, performing medium-scale microscopy experiments, flow cytometry, and molecular biology procedures. 50% Record results
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continued funding availability. The successful candidate will lead a research program focused on the molecular mechanisms of drought tolerance in plants. This role requires a researcher who can transition
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work on the molecular genetics of age-related hearing loss (https://www.grilletlab.com/). The Grillet lab has generated a mouse model carrying a polymorphism identified in Genome Wide Association Studies