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: This project in the Laboratory of Immunology focuses on elucidating molecular and immunological mechanisms underlying immunogenicity and tolerance of therapeutic products. Products will include FDA approved
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about integrating traditional biological research with modern computational approaches. The successful candidate will join an interdisciplinary team of plant pathologists, geneticists, molecular
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background in computational biology, modeling or Machine Learning and Artificial Intelligence Familiarity with basic techniques and principles in cell and molecular biology and biochemistry Willing to learn
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coagulation factor proteins to investigate the mechanisms of coagulation and drug action. The experiments will include enzymatic, clotting, antigen and thrombin generation assays. Mouse models may be used
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-clinical models and multi-omic approaches. The proposed research involves the application of state of the art methods such as single cell RNA-Seq/ATAC seq/spatial transcriptomics on preclinical animal models
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) or be currently pursuing. Preferred skills: Experience in immunology, cell biology, molecular biology, animal models, virology or bioinformatics is desirable. Applicants with strong publication records
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), or data interpretation to bridge molecular and systems biology. Preferred candidates will have experience in molecular biology. virology, flow cytometry, bioinformatics, and animal model handling. Stipend
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and BSL-4 laboratories utilizing a wide range of techniques such as in vitro and in vivo infection models, flow cytometry, ELISA, western blots, and multiplex immunoassays. Our projects rely
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the molecular factors critical for resistance to Bacillus thuringiensis (Bt) toxins/crops. In both cases, an interest in the potential application of arthropod gene-drive systems and their application in
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multidisciplinary skills ranging from honey bee embryonic cell line research to large data analysis and modeling given the nature of the broad organismal to landscape level study. The fellow will also gain