Wykaz publikacji wybranego autora

Krzysztof Pietryga, mgr inż.

asystent

Wydział Inżynierii Materiałowej i Ceramiki
WIMiC-kbik, Katedra Biomateriałów i Kompozytów


Identyfikatory Autora

ORCID: brak

ResearcherID: brak

Scopus: 36671771600




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  • Ca:Mg:Zn:$CO_{3}$ and Ca:Mg:Zn:$CO_{3}$-tri- and bi-elemental carbonate microparticles for novel injectable self-gelling hydrogel-microparticle composites for tissue regeneration
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  • Carbon nanotube-reinforced hydrogels for bone tissue regeneration
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  • Composite scaffolds enriched with calcium carbonate microparticles loaded with epigallocatechin gallate for bone tissue regeneration
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  • Elastic, electrically conductive, cytocompatible and bioprintable composites
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  • Enrichment of enzymatically mineralized gellan gum hydrogels with phlorotannin-rich \emph{Ecklonia cava} extract Seanol® to endow antibacterial properties and promote mineralization
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  • Enrichment of thermosensitive chitosan hydrogels with glycerol and alkaline phosphatase for bone tissue engineering applications
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  • Evaluation of mechanical properties of poly (methyl methacrylate) reinforced with glass fibers
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  • Gentamicin-loaded polysaccharide membranes for prevention and treatment of post-operative wound infections in the skeletal system
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  • Hydrogel scaffolds for medical applications obtained by indirect 3D-printing method
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  • Influence of the electrophoretic deposition route on the microstructure and properties of nano-hydroxyapatite/chitosan coatings on the $Ti-13Nb-13Zr$ alloy
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  • Lactoferrin and collagen type I as components of composite formed on titanium alloys for bone replacement
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  • Mineralization of gellan gum hydrogels with calcium and magnesium carbonates by alternate soaking in solutions of calcium/magnesium and carbonate ion solutions
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  • New calcium-free $Na_{2}O-Al_{2}O_{3}-P_{2}O_{5}$ bioactive glasses with potential applications in bone tissue engineering
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  • Novel injectable, self-gelling hydrogel – microparticle composites for bone regeneration consisting of gellan gum and calcium and magnesium carbonate microparticles
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  • Novel injectable, self-gelling hydrogel – microparticle composites for bone regeneration consisting of gellan gum and calcium and magnesium carbonate microparticles
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  • Osteoblast behaviour on novel whey protein isolate hydrogels
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  • Phenolic plant extract enrichment of enzymatically mineralized hydrogels
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  • Porowate kompozyty $poliuretan/\beta-TCP$ do zastosowań ortopedycznych
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  • The effect of titanium dioxide addition on physical and biological properties of $Na_{2}O-B_{2}O_{3}-P_{2}O_{5}$ and $CaO-Na_{2}O-P_{2}O_{5}$ glasses
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  • The influence of mineralization conditions on the effectiveness of enzymatic mineralization of hydrogels
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  • Whey protein isolate-aragonite composites for bone tissue engineering
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  • Wspomaganie wzrostu komórek kostnych na hydrożelach z gumy gellan za pomocą mineralizacji enzymatycznej