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, to define novel biomarkers, and to identify novel therapeutical targets. We have pioneered in the integration of genetics with omic data to identify proteomic signatures and develop novel predictive models
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measurement. Additional duties involve microbial population analysis (16sRNA), chemistry analysis (N, P, metals), and statistical modeling. The role also entails lab management, including cleaning and safety
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for this position. More About This Job Preferred Qualifications: PhD and postdoctoral experience in a relevant field is highly preferred. Experience in advanced cell culture models. Preferred Qualifications Education
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these projects as well as establishment of services associated with this work are desired. Establishment of cost models, service interfaces project management, and interaction with external potential users making
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will require knowledge and experience with immunotherapies, peptides, chemical and biochemical analysis, and cancer models. Project work will involve peptides, formulation, analytical techniques, and use
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models, develops dashboards and reports. Reviews, manages, and analyzes data from various sources (primary and secondary data, interviews, focus groups, websites, publications, etc.), identifies trends
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disease models, human patient samples, 3D bone marrow organoid models, single-cell RNA-Sequencing, and general molecular and cellular biology techniques. The successful candidate should have a good
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Presentations, Discrete Mathematics, Genome Sequencing, Ggplot, Human Genomics, Machine Learning, Microsoft Office, Perl Programming, PLINK (Software), Probabilistic Modeling, Python (Programming Language
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immune cells from gestational and reproductive tissues, as well as peripheral blood, in both humans and mice. Conduct in vivo experiments in mouse models of pregnancy and inflammation. Process tissue
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applicant will work closely with industry sponsors who will help to guide the project. The Elbert lab and the industry partner are interested in developing mechanistic, predictive models of neurodegenerative