. "18"^^ . . . "1743-5889" . . "Platelet derivatives serve as an efficient source of natural growth factors. In the current study, alpha-granules were incorporated into coaxial nanofibers. Materials & methods: A nanofiber scaffold containing a-granules was prepared by coaxial electrospinning. The biological potential of the nanofiber scaffold was evaluated in chondrocyte and mesenchymal stem cell cultivation studies. Additionally, the concentration of TGF-beta 1 was determined. Results: Microscopy studies showed that intact alpha-granules were incorporated into the coaxial nanofibers. The cultivation tests showed that the novel scaffold stimulated viability and extracellular matrix production of chondrocytes and mesenchymal stem cells. In addition, the concentration of growth factors necessary for the induction of cell proliferation significantly decreased. Conclusion: The system preserved alpha-granule bioactivity and stimulated cell viability and chondrogenic differentiation of mesenchymal stem cells. Core/shell nanofibers incorporating a-granules are a promising system for tissue engineering, particularly cartilage engineering."@en . "Jakubov\u00E1, Radka" . . "6"^^ . . "Buzgo, Matej" . "8"^^ . . . . "7" . . . "http://dx.doi.org/10.2217/NNM.12.140" . . "Time-regulated drug delivery system based on coaxially incorporated platelet alpha-granules for biomedical use" . . "M\u00ED\u010Dkov\u00E1, Andrea" . . "Lukas, David" . "Time-regulated drug delivery system based on coaxially incorporated platelet alpha-granules for biomedical use" . . "11130" . . "GB - Spojen\u00E9 kr\u00E1lovstv\u00ED Velk\u00E9 Brit\u00E1nie a Severn\u00EDho Irska" . "Time-regulated drug delivery system based on coaxially incorporated platelet alpha-granules for biomedical use"@en . . "000320853500017" . "Amler, Ev\u017Een" . "10.2217/NNM.12.140" . . . "8" . . . . . . "RIV/00216208:11130/13:10209656!RIV14-MSM-11130___" . . . . "Rampichov\u00E1, Michala" . . "P(GAP304/10/1307), P(ME10145), S, Z(AV0Z50390512), Z(AV0Z50390703)" . "Nanomedicine" . . "Proseck\u00E1, Eva" . "RIV/00216208:11130/13:10209656" . "Platelet derivatives serve as an efficient source of natural growth factors. In the current study, alpha-granules were incorporated into coaxial nanofibers. Materials & methods: A nanofiber scaffold containing a-granules was prepared by coaxial electrospinning. The biological potential of the nanofiber scaffold was evaluated in chondrocyte and mesenchymal stem cell cultivation studies. Additionally, the concentration of TGF-beta 1 was determined. Results: Microscopy studies showed that intact alpha-granules were incorporated into the coaxial nanofibers. The cultivation tests showed that the novel scaffold stimulated viability and extracellular matrix production of chondrocytes and mesenchymal stem cells. In addition, the concentration of growth factors necessary for the induction of cell proliferation significantly decreased. Conclusion: The system preserved alpha-granule bioactivity and stimulated cell viability and chondrogenic differentiation of mesenchymal stem cells. Core/shell nanofibers incorporating a-granules are a promising system for tissue engineering, particularly cartilage engineering." . . "111118" . "Kochova, Petra" . "mesenchymal stem cell; growth factor; encapsulation; electrospinning; core/shell material; chondrocyte; alpha-granules"@en . "[F0B22F6415C1]" . "Time-regulated drug delivery system based on coaxially incorporated platelet alpha-granules for biomedical use"@en .