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Anna M. Osyczka
Researcher at Jagiellonian University
Publications - 60
Citations - 1174
Anna M. Osyczka is an academic researcher from Jagiellonian University. The author has contributed to research in topics: Simulated body fluid & Tannic acid. The author has an hindex of 17, co-authored 57 publications receiving 917 citations.
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Journal ArticleDOI
Regulation of BMP-induced transcription in cultured human bone marrow stromal cells.
TL;DR: It is suggested that the relative insensitivity of alkaline phosphatase to BMP induction in human bone marrow stromal cells may contribute to the variation in efficacy reported with BMP in clinical settings.
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Degradation, Bioactivity, and Osteogenic Potential of Composites Made of PLGA and Two Different Sol–Gel Bioactive Glasses
Elżbieta Pamuła,J. Kokoszka,Katarzyna Cholewa-Kowalska,Maria Laczka,Lukasz Kantor,Lukasz Niedzwiedzki,Gwendolen C. Reilly,Joanna Filipowska,Wojciech Madej,Malgorzata Kolodziejczyk,Grzegorz Tylko,Anna M. Osyczka +11 more
TL;DR: In this article, the authors developed poly(l-lactide-co-glycolide) (PLGA) based composites using sol-gel derived bioactive glasses (S-BG), previously described by their group, as composite components.
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New composite materials prepared by calcium phosphate precipitation in chitosan/collagen/hyaluronic acid sponge cross-linked by EDC/NHS.
TL;DR: The results showed that the properties of 3D composites cross-linked by EDC/NHS were altered after the addition of 1, 2 and 5% hyaluronic acid and mechanical parameters, thermal stability and porosity of scaffolds were improved.
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Bioactivity of coatings formed on Ti-13Nb-13Zr alloy using plasma electrolytic oxidation.
Maciej Sowa,Magdalena Piotrowska,Magdalena Widziolek,Grzegorz Dercz,Grzegorz Tylko,Tadeusz Gorewoda,Anna M. Osyczka,Wojciech Simka +7 more
TL;DR: During culturing of hBMSCs on the bioactive Ti-13Nb-13Zr surfaces the differentiation of human mesenchymal stem cells toward osteoblasts was promoted, which indicated a potential of the modified materials to improve implant osseointegration.
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Incorporation of sol-gel bioactive glass into PLGA improves mechanical properties and bioactivity of composite scaffolds and results in their osteoinductive properties.
Joanna Filipowska,Justyna Pawlik,Katarzyna Cholewa-Kowalska,Grzegorz Tylko,Elżbieta Pamuła,L Niedzwiedzki,Mariusz Szuta,Maria Laczka,Anna M. Osyczka +8 more
TL;DR: Beyond the ability of currently studied composites to enhance hB MSC osteogenesis, it may become possible to modulate the osteogenic response of hBMSC, depending on the chemistry of SBGs incorporated into polymer matrix.