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synthetic biology, gene circuit engineering, phenotyping and in vivo models. The Duraisingh Laboratory studies host-pathogen interactions, focused on malaria, babesiosis, and red blood cells. The laboratory
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for their contributions in Science, Technology, Engineering and Math (STEM) fields and commitment to serving as role models for younger generations.
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, focusing on the study of odorant receptors in arthropods like mosquitos. Using an interdisciplinary range of approaches such as cryo-electron microscopy (cryo-EM), electrophysiology, computational modeling
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independent research projects focused on the somatosensory system Conduct experiments in mice and rat models, including electrophysiology, live imaging, and behavioral studies Apply molecular biology techniques
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the Harper lab at Harvard Medical School in Boston, Massachusetts. Our laboratory works at the intersection of protein and organelle quality control, the ubiquitin system, and autophagy and its role in
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or more of the following is welcome, but not required: flow cytometry, viral or non-viral gene transfer technologies, AI/ML based modeling, or the execution of in vivo functional genetic screens. Key
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to analyze large multi-modal datasets and/or who wish to deploy the next generation of exposome AI models. These positions come with data ready to analyze: the candidate can focus on developing research
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new biological axes of progression, developing integrative computational models of early disease states, and contributing to the design of next-generation diagnostic and intervention strategies. In
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degree to provide initial funding leading to an independent career in cancer research (including basic, preclinical, clinical, cancer control, psychosocial, behavioral, epidemiology, health services and
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the lab. Specifically, candidates should have experience working with mouse models of immune activation, autoimmunity, or infection; isolation and in vitro culture of mouse and/or human immune cells