25 agent-based-modelling Postdoctoral positions at University of Nebraska Medical Center
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molecular mechanisms driving lymphoma progression and therapy resistance. This position will leverage cutting-edge approaches including spatial transcriptomics, CRISPR-based functional genomic screening, and
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, CRISPR-based functional genomic screening, and patient-derived xenograft (PDX) models to discover novel therapeutic targets and biomarkers. The postdoc will have access to state-of-the-art facilities
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familiar with mammalian cell culture, gene cloning, transfections, cell culture-based assays and animal handling. Experience in handling brain tumor mouse models with intracranial injections is highly
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preclinical models for the treatment of neuro-oncological diseases. Dr. Salehi has pioneered a laser interstitial thermal therapy mouse model and previously studied blood-brain barrier breakdown in patient
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. The potential candidate is expected to perform various molecular biology, cell and tissue culture techniques, generation of lung and breast cancer mouse models, and analysis of biomarkers in serum and tissues
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adenocarcinoma (PDA) pathogenesis. The murine models of distinct genetic subtypes of pancreas cancer that we have developed form the basis of our integrated, systematic, and multidisciplinary research program. Our
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Medical Center. Dr. Salehi's lab is at the forefront of research in brain cancer therapeutics. Our work focuses on developing and validating preclinical models for the treatment of neuro-oncological
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immunology and molecular biology techniques. Preferred experiences are with mouse models of kidney injury and microsurgical skills in particular. Successful applicant’s work will include investigation
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Position Summary Working on projects on cellular and animal models for drug resistance in PDAC and ovarian cancer Required Qualifications Ph.D. or equivalent degree in cell biology, cancer biology or similar
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vitro and in vivo models of congenital heart defects. This individual will complete projects that require expertise in iPSC biology and derivation of terminal cell types, methods of molecular biology