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Moreover, the formed nanoporous PMMA-QDs fiber media exhibited an excellent biocompatibility as evidenced by the model Chinese hamster ovary (CHO) cell culturing test.
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An initial cell culture test showed that fibroblasts adhere on the foam's surface.
The in vitro cell culture test was performed using MC3T3-E1 osteoblast cells to assess cell response of the different NFs.
The adhering of human endothelial EVC304 cells on APP modified surface was enhanced in the cell culture test.
Furthermore, the biomimetic nature of scaffolds exhibited the cells viability and regeneration of pre-osteoblast (MC3T3-E1) cells which were assessed via in vitro cell culture test.
Characterisation of the prepared nanopowder was carried out by XRD, FTIR, TEM, SEM, EDX, ICP, zeta potential, acid dissolution test, and cell culture test.
Moreover, the results of cell culture test showed that CS/OGP coating could stimulate the proliferation and growth of osteoblast cells on CS/OGP/PLA scaffold.
Surface and interfacial microscopic observations revealed that, at the beginning of the cell culture test, osteoblasts attached strongly to the inner walls of the pores in the HAp-TiO2 coating.
However, for minimum inhibitory concentration (MIC) and minimum bactericidal concentration (MBC) determination of plant extracts, the method used by Sette et al. (2006) with some modifications was followed on a cell culture test plate (96 wells).
Produced samples have been evaluated in terms of antibacterial efficiency and biocompatibility (cell culture test).
Cell culture test results on 96 h postseeding samples were showed in Figure 5.
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