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as well as RNA processing mechanisms in bone regeneration, and to define molecular mechanisms that underpin impaired bone repair in different disease models including obesity/type 2 diabetes. Research
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molecular mechanisms that underpin impaired bone repair in different disease models including obesity/type 2 diabetes. Investigating innovative roles of immune cells in the homeostasis of musculoskeletal
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replication and pathogenesis mechanisms of hepatitis B virus, using a variety of technologies including biochemistry, molecular and cell biology, and animal models. The scholar will be responsible for training
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approaches. Education Requirements: The successful candidate will possess a doctoral degree with expertise in molecular biology, experience with in-vivo and in-vitro models of inflammation testing, and
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. in biomedical sciences or related field Publication record in peer-reviewed journals Hands-on experience with mammalian cell culture, rodent models, and standard molecular/cell biology techniques (e.g
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across various developmental stages in knockout mouse models. Apply high-throughput molecular and cellular techniques to assess gene expression, spatial organization, and cellular diversity in
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peer-reviewed journals Hands-on experience with mammalian cell culture, rodent models, and standard molecular/cell biology techniques (e.g., Western blot, PCR, transfection, construct design, shRNA