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PERFORMED Conceptualize novel project(s) related to objectives of the lab. Design and execute experiments investigating host immune responses to bacterial pathogens,macrophage biology, and host-directed
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 22 days ago
. The successful candidate will lead a project that integrates classical microbiology with genomics to characterize clinical bacterial isolates and to define the mechanisms underlying -lactam tolerance. The position
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of determining how the host discriminates between the beneficial and harmful microbes there. For more information about the Barton lab, please visit https://bartonlab.berkeley.edu/ About the role: In this role
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Research Associate. Our lab in the Microbiology section is focused on complex bacterial behaviors, including biofilm formation and host interactions, using the plant pathogen Agrobacterium tumefaciens as a
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 1 month ago
. The successful candidate will lead a project that integrates classical microbiology with genomics to characterize clinical bacterial isolates and to define the mechanisms underlying -lactam tolerance. The position
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Science dated July 20, 2018 (Polish Journal of Laws of 2024, no. 1571 as amended). Specific Requirements Main duties: Investigation of interactions between the prepared carriers and model bacterial
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, bacterial physiology, bacterial development and gene regulation, bacterial pathogenesis, virology and viral pathogenesis, molecular and cellular parasitology, immunology, molecular genetics, stem cell biology
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immunity in tuberculosis (TB). We are striving to define the critical determinants of adaptive immunity to Mycobacterium tuberculosis, the bacterial pathogen responsible for TB, the most common infectious
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to better understand SAMHD1-mediated regulation of innate immunity during HIV-1 or SARS-CoV-2 infection. Please see the Wu lab website (https://wu.lab.uiowa.edu/ ) for more information about our research
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. Evaluate antimicrobial activity: Investigate the ability of nanozyme-coated surfaces to inhibit bacterial growth and biofilm formation while reducing reliance on conventional antibiotics. Investigate nano