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diagnosis and prognosis. Our work emphasizes the use of advanced mass spectrometry (including single-cell and spatial proteomics) techniques for proteomics, protein/peptide characterization, and the analysis
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analysis. These projects will require experience in mass spectrometry and bioinformatics, including a strong knowledge of LC-ESI-MS/MS and HPLC operation, as well as experience in the integration of large
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: nanomaterial design and fabrication, biosensor development, nanopore sequencing, cell culture, protein and exosome purification, mass spectrometry operation and data analysis, and most standard laboratory assays
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approaches such as single-cell multi-omics profiling (e.g., scRNA-seq and Perturb-seq), CRISPR/Cas9, mass spectrometry, ChIP-seq, RNA immunoprecipitation (RIP)-seq, eCLIP-seq (enhanced CrossLinking and
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following areas: molecular/cell biology, biochemistry, metabolism, cancer genetics, or using Mass Spectrometry-related technologies to study metabolism. We prefer candidates who are about to graduate with PhD
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are also developing tools to predict which patients will likely fail immune-based therapy via novel high dimensional flow cytometry, mass spectrometry, and informatics techniques, allowing those patients