
PAN NFs) and containing tertiary alloy particles (M′ M″ M‴
PAN NFs. Then, the effect of alloyed nano-scaffold (M′ M″ M‴
PAN NFs), which contain different amounts of constituent metals of Pt, Au and Ag, on the proliferation, growth, metabolic activity, and bone differentiation activity of mesenchymal stem cells in in-vitro conditions was examined.
PAN NFs) were better than other scaffolds, thus, the differentiation of stem cells on their surface was assessed. Cellular experiments for these scaffolds confirmed a dramatic increase in growth, proliferation, and differentiation of mesenchymal stem cells into bone cells on alloyed nano-scaffolds (M′ M″ M‴
PAN NFs) compared to scaffolds (PAN NFs). Bioavailability, cellular matrix mineralization, calcium level, alkaline phosphatase activity and expression levels of genes (Runx۲, ALP, Col (I), osteocalcin and osteonectin) in mesenchymal stem cells cultured on these nano-alloyed scaffold in days (۷, ۱۴ and ۲۱) have increased significantly. This increase in dose-dependent behaviour of the constituent metals (Pt, Au and Ag) was compared with the control group and the non-alloy scaffold group (PAN NFs). It is likely that this increase in the osteogenic differentiation process of mesenchymal stem cells is also mediated by activation of the interaction (cell-scaffold surface). According to all the results of this study, Pt۲Au۱Ag۱ (first), Pt۱Au۲Ag۱ (second) and Pt۱Au۱Ag۲ (third) can be valuable osteogenesis factors in inhibiting cell death, increasing cell proliferation and survival. As a result, it was used in advanced cell therapy and tissue engineering technologies.
PAN NFs), the amount of calcium, the activity of the alkaline phosphatase enzyme and the metabolic activity of the osteoblasts are different from each other. Therefore, in addition to Alizarin staining S, the factors mentioned in this study can be used to detect in-vitro differentiation of mesenchymal stem cells into osteoblasts. Because they have excellent ossification capabilities, they will be useful in restorative medicine to regenerate bone tissue.