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infection with significant emphasis on T cell differentiation and exhaustion. Essential Functions This full-time position involves working both independently and in a team environment with other members
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on a funded research project. The project aims to study the role of the primitive collagen, type V, in regulating the progenitor cell chondrogenesis in vivo and in vitro, and to test the therapeutic
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Neuropharmacology. Minimum of close to year of experience. Experience working with rodent models of pain, molecular and cell biology techniques and bioinformatic analyses. Location Center City, Philadelphia, PA
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models. Experience with mammalian cell culture. Goal-oriented and attention to details. Physical Requirements Typically sitting at a desk/table. Typically standing, walking. Lifting Demands <25lbs
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independently or as a member of a team. Experience working with rodent animal models. Experience with mammalian cell culture. Goal-oriented and attention to details. Physical Requirements Typically sitting at a
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reshoring of manufacturing, decarbonization of energy assets and electrification of mobility, remilitarization and increases in defense spending, the acceleration of remote work, the and the rise of parasitic
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the refinement of entry criteria for clinical trials of new treatments. Essential Functions 3D cell culture, total RNA extraction and measurement, quantitative reverse transcriptase. polymerase chain reaction
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for energy storage applications. The visiting researcher will be trained on how to successfully complete the tasks at hand. They will work in the laboratory or on related tasks in the pursuit of synthesizing
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groundbreaking research on the world’s most pressing issues. About Biology Drexel University’s Department of Biology is home to a dynamic group of researchers who are leaders in the fields of cell and molecular
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the refinement of entry criteria for clinical trials of new treatments. Essential Functions Independently conduct 3D cell culture, total RNA extraction and measurement, quantitative reverse transcriptase