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of organic solids, physics and physical chemistry of polymers, including: • electrical and optical properties, conductivity and photoconductivity of polymers; • electroluminescence and luminescence
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technology, microencapsulation, lecithinization, and the production and characterization of polymeric biomaterials Knowledge of polymer and nanomaterial chemistry Ability to design and optimize encapsulation
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with hormone receptors that demonstrate synergistic activity and a favorable safety profile, followed by the preparation of their bioconjugates and encapsulation in naturally derived polymers. The next
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receptor-interacting molecules exhibiting synergistic activity and favourable safety profiles, followed by the preparation of their bioconjugates and encapsulation in naturally derived polymers. Subsequent
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European Commission as well) and conducting classes with students (all forms, in particular: laboratories, seminars, project). Those activities are related to thermoplastic polymer processing: novel
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(mILF SD) in integration with PVD catheters, assessing synergy with polymer surfaces, and monitoring the biocompatibility of catheter extracts in accordance with ISO 10993-5; supporting field and
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cardiovascular disease. By combining naturally derived and synthetic polymers, the stents will feature improved mechanical stability, biocompatibility, and the ability to support the growth of a functional