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related field, with a strong interest in studying oxidative protein folding in bacteria and targeting this process in pathogens. High degree of initiative, time management and professionalism, very
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Center for Drug Evaluation and Research (CDER) | Silver Spring, Maryland | United States | 8 days ago
, specifically Product Safety Surveillance (e.g., to evaluate contamination rates across different OTC eye drop container closures systems), and Technologies to Reduce Pathogen Contamination (e.g., OTC eye drop
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development of hydrodynamic and water quality models. Experience in bacteria/pathogens modelling is preferred. In addition to the above, the Research Fellow is expected to contribute actively in writing reports
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against expensive and dangerous health threats, and responds when these arise. The Chronic Viral Diseases Branch (CVDB) is located within the Division of High-Consequence Pathogens and Pathology, National
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About the role This is an exciting opportunity to join the team that have been working on the rapid clinical development of vaccines against COVID-19 and other important outbreak pathogens including
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achieved: a) Contribute to the development of relevant databases of human DNA and the pathogen Mycobacterium tuberculosis; b) Perform DNA extraction from ancient human remains for subsequent sequencing in a
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in the project. Preparation of a list of genes potentially involved in pituitary disorders. Genetic sequencing of patients through whole-exome sequencing (WES). Identification of potentially pathogenic
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of horticultural specialty crops caused by fungal pathogens, physiological disorders, and the control of quarantine insect pests that threaten market access and export opportunities. Research Project
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biology of structurally complex, virulence-associated glycolipids from the cell envelope of mycobacterial pathogens, such as Mycobacterium tuberculosis. We are seeking talented individuals with demonstrated
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in the project. Preparation of a list of genes potentially involved in pituitary disorders. Genetic sequencing of patients through whole-exome sequencing (WES). Identification of potentially pathogenic