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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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innovations in mechano-driven cartilage tissue engineering? Are you driven to develop novel in silico frameworks that deepen mechanistic understanding of tissue growth and inform in vitro experiments? Then you
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. For more information see: https://medicine.iu.edu/faculty-labs/witczak Successful candidates will have recently completed PhD training, possess a strong background in type 2 diabetes, metabolism, and/or
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. For more information see: https://medicine.iu.edu/faculty-labs/witczak Successful candidates will have recently completed PhD training, possess a strong background in type 2 diabetes, metabolism, and/or
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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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of project specific research activities including: the running and troubleshooting of experiments (e.g. isolation of cells from human cartilage, cell culture, DNA and RNA extractions, PCR and qPCR, Hi
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of Animal Use Protocols (AUPs) and Standard Operating Procedures (SOPs); performs specialized laboratory techniques, including histomorphometric analysis of bone and cartilage; and provides technical
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Isolation of primary skin cells from human skin specimens and in vitro cell culture. Organization and maintenance of cellular and tissue biobank. Generation of 3D engineered skin, cartilage and other tissues
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patient recruitment, and blood and joint sample processing (cartilage, synovium). Desirable Criteria: Experience in single cell RNA-seq. Experience of analysing genomic data including RNA-Seq. Knowledge
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apply them to uncover the mechanistic role of matrix viscoelasticity in biological contexts, for example articular cartilage maturation and cancer cell migration. Job description In the first part of