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Best results in : Research Potential Pokaż wszystkie wyniki (14)
Search results for: CONCATEMERIC POLYPEPTIDESDNA AMPLIFICATIONDNA MULTIMERSPEPTIDE-BASED BIOMATERIALS
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Zespół Biomateriałów
Research PotentialInżynieria i technologia biomateriałów, inżynieria powierzchni, wytwarzanie implantów metalowych, rozwój materiałów odpornych na korozję
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Katedra Technologii Polimerów
Research PotentialW Katedrze Technologii Polimerów realizowane są prace badawczo-wdrożeniowe, wykonywane ekspertyzy i analizy oraz prowadzone są szkolenia w zakresie technologii polimerów oraz przetwórstwa i recyklingu tworzyw sztucznych. Oferujemy nowe technologie i przeprowadzamy modyfikacje technologii już istniejących.
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Zespół Projektowania i Automatyzacji Procesów Technologicznych
Research PotentialProjektowanie procesów technologicznych wspomaganych komputerowo
Best results in : Business Offer Pokaż wszystkie wyniki (2)
Search results for: CONCATEMERIC POLYPEPTIDESDNA AMPLIFICATIONDNA MULTIMERSPEPTIDE-BASED BIOMATERIALS
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Laboratorium Materiałów Polimerowych
Business OfferLaboratorium jest wyposażone w:; • plastometr do badań wskaźnika szybkości płynięcia uplastycznionego tworzywa, ; • młot do badań udarności materiałów, ; • wtryskarkę hydrauliczną z urządzeniami peryferyjnymi wymaganymi do uruchomienia produkcji znormalizowanych próbek do badań wytrzymałościowych,; • zestaw urządzeń przetwórczo - pomiarowych;
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Laboratorium Nanomateriałów CZT
Business OfferBadanie właściwość powierzchni z wykorzystaniem mikroskopu sił atomowych
Other results Pokaż wszystkie wyniki (30)
Search results for: CONCATEMERIC POLYPEPTIDESDNA AMPLIFICATIONDNA MULTIMERSPEPTIDE-BASED BIOMATERIALS
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Data regarding a new, vector-enzymatic DNA fragment amplification-expression technology for the construction of artificial, concatemeric DNA, RNA and proteins, as well as biological effects of selected polypeptides obtained using this method
PublicationApplications of bioactive peptides and polypeptides are emerging in areas such as drug development and drug delivery systems. These compounds are bioactive, biocompatible and represent a wide range of chemical properties, enabling further adjustments of obtained biomaterials. However, delivering large quantities of peptide derivatives is still challenging. Several methods have been developed for the production of concatemers –...
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A vector-enzymatic DNA fragment amplification-expression technology for construction of artificial, concatemeric DNA, RNA and proteins for novel biomaterials, biomedical and industrial applications
PublicationA DNA fragment amplification/expression technology for the production of new generation biomaterials for scientific, industrial and biomedical applications is described. The technology enables the formation of artificial Open Reading Frames (ORFs) encoding concatemeric RNAs and proteins. It recruits the Type IIS SapI restriction endonuclease (REase) for an assembling of DNA fragments in an ordered head-to-tail-orientation. The...
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Evaluation of the Cathodic Electrodeposition Effectiveness of the Hydroxyapatite Layer Used in Surface Modification of Ti6Al4V-Based Biomaterials
PublicationThe important issue associated with the design and the fabrication of the titanium and titanium alloy implants is the increase of their biointegration with bone tissue. In the presented paper, the research results concerning the conditions used in the cathodic deposition of hydroxyapatite on the surface Ti6Al4V substrates primarily modified by the production of TiO2 nanoporous coatings, TiO2 nanofibers, and titanate coatings, are...
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Polylysine for Skin Regeneration: A Review of Recent Advances and Perspectives
PublicationThere have been several attempts to find promising biomaterials for skin regeneration, among which polylysine (a homopolypeptide) has shown benefits in the regeneration and treatment of skin disorders. This class of biomaterials has shown exceptional abilities due to their macromolecular structure. Polylysine-based biomaterials can not only be used as tissue engineering scaffolds for skin regeneration, but also as drug carriers...
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Rozwój materiałów tytanowych na implanty aloplastyczne = Development of Ti-based materials for alloplastic implants
PublicationThe article is aimed at demonstraiting the previous results and current research work in the area made by Advanced Biomaterials Research Group at the Faculty of Mechanical Engineering. The paper concentrated on the developement of Ti-based biomaterials with improved biocompatibility and bioactivity.