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Field
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, or related scientific fields is required for this position as well as expertise in working with C. trachomatis or other genetically intractable obligate intracellular bacterial pathogens, immune
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, and microbial resource management. The work comprises the analysis of temporal dynamics of bacterial and archaeal communities, large-scale sampling and quantitative molecular analyses, as
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millifluidic environments by investigating the influence of select biopolymers and medium formulations on bacterial and nutrient transport. Fluidic layers will be designed to simulate relevant sediment grain
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vivo experimental models (e.g. ticks and mice) to identify and characterize bacterial virulence factors and host cell machinery; molecular, cellular, and immunological mechanisms that facilitate
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to systematically map drug and genetic interactions of bacterial immunity in microbial isolates using high-throughput genetics (Brenzinger et al, 2024, Nature Microbiology ). The ideal candidate will do wet-lab work
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various bacterial and viral infections. This position will assist in generating necessary data for currently funded research projects. What you need to know Salary: Will be commensurate based
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grant-funded position involves conducting research through multidisciplinary approaches to investigate host immunity to pathogens, bacterial physiology, structural biology, macrophage biology, host
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) Knowledge of surface modification techniques such as laser processing; d) Experience in the analysis of materials and surfaces; e) Experience in in vitro assays for bacterial and cellular evaluation
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develop and implement high-throughput in vitro phenotypic screening assays to identify nutritional interactions between commensal gut bacteria and enteric bacterial pathogens with the aim of inhibiting
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many bacterial signal transduction systems have been characterized individually, the mechanisms by which bacteria integrate multiple concurrent signals remain poorly understood. Antimicrobial peptides