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vitro cellular models and in vivo mouse models to investigate mechanisms of cardiovascular disease. He should have prior experience with the molecular biology techniques such as immunoblotting, PCR
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spectrometry-based metabolomics, isotope tracing, and lipidomics, to dissect metabolic rewiring in lung cancer. The research will integrate patient-derived models, organoids, and in vivo tumor models. Lab Focus
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data from different cellular and molecular experimental platforms. Conducting studies in transgenic mouse models, managing mouse colony and their genotyping records. Develops and troubleshoots new
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, and in vivo models to elucidate mechanisms underlying tumor evolution and drug resistance. The candidate will have access to state-of-the-art technologies and work in a highly collaborative
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spatial biology, single-cell RNAseq Multiplex, etc and animal (mice) models such as humanized mice, PDX models and other models simulating patients. Responsibilities Designs and conducts research on cancer
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, Biostatistics, Clinical Trials Office, Clinical Treatment Unit/Clinical Trials Processing Lab, Comparative Pathology and Mouse Phenotyping, Genetically Engineered Mouse Modeling, Genomics, Leukemia Tissue Bank
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, in vitro splicing and mouse models serve as systems in which to study the mechanism for alternative splicing as well as the biological endpoints of the pathways. The laboratory's approaches include
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the Comprehensive Cancer Center. Conducts research to characterize immunologic basis of human cancer using vitro and murine models; develops, adopts and implements new laboratory methods to achieve characterization
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malignancies with a primary focus on lung cancer. The lab has established the use of multiple high-throughput screening technologies, genomics, proteomics, epigenetics, clinical samples, and animal models
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Upgrade for the high luminosity running of the LHC and searching for Beyond the Standard Model physics using effective field theory. The Post Doctoral Scholar will take a leading role in analysis of Run 2