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include: tissue regeneration, tissue stent, long-term surgical functions, etc. This project can be adjusted depending on the applicant’s interest in engineering. The project is suitable for applicants with
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in last two years. Expertise in one or more of the following areas: Tissue engineering and bone or dental tissue regeneration, osteoimmunology and/or immunometabolism/bone cellular and molecular
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biotechnology, biomedical engineering, bioengineering or health sciences. The main functions to be developed are: Design, optimization and implementation of tissue engineering techniques in preserved organs
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, biomaterials, tissue engineering, biotechnology, cell biology, or a related field Demonstrated experience in 3D biofabrication and biomaterial-based human cell models Hands-on experience with hydrogels/bioinks
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University! Help us build the first optogenetically controllable model of sympathetic innervation in engineered 3D tissue, combining stem cell biology, genetic engineering, and advanced imaging. In this
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regenerative medicine is required. Strong history of publications in the areas of regenerative medicine, biomaterials, drug delivery, and tissue engineering are required. Pathology and/or immunological
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to tissue engineering and to establish alternative experimental models to animal testing (NAM). The work will be carried out on the INGESYSBIO meta-platform: Engineering of native or reconstructed
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engineering project respectively. The projects will be performed within the Cell, Tissue and Organ Engineering group led by Dr. Paul Bourgine. Bone is a complex Organ offering structural and mechanical
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other institutes to integrate their systems into the processing of fibrous muscles. Key Responsibilities: To develop muscle bundles for cultivated meat using tissue engineering and mechanotransduction
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properties, connecting molecular-level design with material properties and applications in bioengineering. PhD Candidate in Supramolecular Hydrogels for Biomaterials and Tissue Engineering Our goal: To