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, Orthopaedics, Regenerative Medicine, or a related discipline. Demonstrated research experience in tissue engineering, regeneration, biomaterials, hydrogel systems, 3D bioprinting, implantable devices, or related
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sustainable alternatives to conventional biomaterials. The project will focus on engineering collagen-based hydrogels and bioinks with precisely tunable mechanical, viscoelastic, and degradation properties
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IWRI - Postdoctoral Researcher in Bioinspired Circular Conversion of Multi-source Biomass Feedstocks
Biopolymers, modification, and supramolecular assembly. Experience in developing biobased hydrogels or hydrated colloidal systems for water retention, soil improvement, or controlled release applications
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. The research focuses on developing next-generation plasma-treated hydrogels as a novel, selective cancer therapy. Operate and optimize non-thermal plasma systems for hydrogel modification Develop RONS-loaded
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optimization: Within the scope of the inkCare project, it is necessary to develop bioinks suitable for the printing of biofilms. The candidate will be responsible for developing hydrogel-based bioinks and for
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well as recombinant cells with produced Baeyer-Villiger monooxygenases will be stabilized using innovative immobilization and co-immobilization methods of entrapment and encapsulation. Hydrogel and polyelectrolyte
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selection process for an indefinite employment contract within the framework of a Line of Research: R&D line: Preparation of advanced hydrogels for generating diffraction gratings and microguides applicable
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David Butler paul.butler@nist.gov 301.975.2028 Yun Liu yun.liu@nist.gov 301.975.6235 Description Many interesting soft matter materials, such as colloidal solutions, hydrogels or protein formulations, may
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dissipatifs dépendants du temps [2]. Ce cadre constitue une base pertinente pour développer des modèles généralisables à une large classe de matériaux souples fonctionnels (hydrogels, polymères, tissus
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targets enabling innovative cancer therapy strategies. Techniques: Live-confocal microscopy, super-resolution microscopy, 2D and 3D cell cultures, hydrogels of different stiffness, proximity biotinylation