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of expected activities, see the FNIH Precision Dosimetry Imaging Biomarker (PDIB) project: https://fnih.org/our-programs/biomarkers-consortium/precision-dosimetry-imaging-biomarker/ Are you passionate
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bioconjugation and radiochemistry tools to rigorously evaluate the therapeutic potential of phage-based vectors. Over the four-year timeline, the research will advance from molecular design and phage production
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are an advantage Ability to communicate and carry out work in an interdisciplinary research team (radiochemistry, biochemistry, geochemistry, physical chemistry) and willingness to participate in scientific
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. Familiarity in bio/nanomaterial synthesis, bioimaging, drug delivery, radiochemistry, and/or molecular biology techniques is preferred. Experience working with radioisotopes and small animal models is desirable
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for bacterial or fungal new targets or developing theragnostic agents Radiation safety, regulation and handling radioisotopes Radiochemistry (radiolabelling of compounds, purity, stability and in vitro
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for bacterial or fungal new targets or developing theragnostic agents Radiation safety, regulation and handling radioisotopes Radiochemistry (radiolabelling of compounds, purity, stability and in vitro