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research program investigates the cellular and molecular mechanisms regulating craniofacial skeletal development, temporomandibular joint (TMJ) homeostasis, cartilage regeneration, and skeletal
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cartilage-targeted gene delivery within a fast-paced, NIH-funded and industry-collaborative environment. This position is designed for top-tier, self-driven scientists who can independently execute, manage
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osteoarthritis (PTOA)-associated joint degeneration and pain. A PhD is required Prior experience working with murine models of PTOA-associated cartilage catabolism and pain using pharmacologic treatments Onsite
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cartilage and intervertebral discs under biomimetic loading conditions, coupled with advanced imaging systems. - activities: Adapt and optimize the SOLANO miniaturized hexapod robot (Symétrie) for high
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technologies to address the increasing burden of bone, muscle and cartilage disorders. The ICMH is an integrated research facility and consists of core facilities directed towards the study of muscle-bone
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technologies to address the increasing burden of bone, muscle and cartilage disorders. The ICMH is an integrated research facility and consists of core facilities directed towards the study of muscle-bone
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 2 months ago
Qualifications, Competencies, and Experience . Knowledge of cartilage and/or synovial biology, cell and tissue imaging, mouse experiments. Special Physical/Mental Requirements Must be able to perform wet-lab
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. This position provides access to state-of-the-art facilities and resources to support both clinical and basic science research. Research efforts will focus on understanding the bone and cartilage healing
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 2 months ago
, imaging, biomarkers distribution in blood or synovial fluid) as well as histological evaluation of multiple tissues (cartilage, bone, synovium, muscles), protein/gene expression analyses in isolated tissues
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connective tissues, including cartilage and disc. We are looking for a creative innovator who can work with us on new molecular/biomaterial chemistries to optimize connective tissue repair and regeneration