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heterogeneity to reduce the potential of tumor antigen escape, overcoming the suppressive tumor micro-environment to improve CAR T cell function, monitoring tumor trafficking, optimizing CAR T cell route
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mouse models, human samples, and state-of-the-art immunological, molecular, and computational approaches. You will work within a collaborative and multidisciplinary environment that integrates immunology
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-dimensional genomic datasets. Strong programming skills in Python and/or R, and experience with Linux/HPC computing environments. Experience with single-cell RNA-seq, single-nucleus RNA-seq, sc/snATAC-seq
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-cell communication, and hormone secretion at single-cell and tissue-wide levels. You will join a dynamic research environment with opportunities to develop expertise in pancreatic physiology, advanced
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seminars, supporting neighboring laboratories, and helping maintain a safe and efficient research environment. · Present research findings at national and international scientific conferences
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projects while working collaboratively within a highly interactive laboratory environment. Current research areas include: · Circadian regulation of skeletal muscle regeneration and stem cell biology
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contributes to diabetes susceptibility and pathogenesis. · Work within a highly collaborative, multidisciplinary environment while developing new research questions and directions. · Perform
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within a highly interactive laboratory environment. Current research areas include: · Circadian regulation of skeletal muscle regeneration and stem cell biology · Transcriptional and
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binding studies, such as SPR, ITC, and DSF. Collaborate in a highly integrated research environment that brings together structural biology, chemical biology, and translational science. Your qualifications
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evaluate targeted molecular imaging agents for translational research. You will work closely with investigators from multiple disciplines in a collaborative research environment and contribute to projects