Exact(1)
In addition, cytotoxicity and in vitro cell culturing tests of selected foams showed that the fabricated porous materials were non-cytotoxic and able to support cellular adhesion within the 3D structure, suggesting that these are promising materials for tissue engineering applications.
Similar(59)
Moreover, the formed nanoporous PMMA-QDs fiber media exhibited an excellent biocompatibility as evidenced by the model Chinese hamster ovary (CHO) cell culturing test.
To investigate the plasma treatment effect on PCL-cell interactions, cell culture tests have also been performed.
Each stratus was independently analyzed during the cell culture tests with MC3T3-E1 preosteblast-like cells.
One compound had passed cell culture tests, but caused massive blood vessel deterioration in vivo.
In our preliminary cell culture tests, osteoblast cells were found to attach and proliferate better on the chemically treated samples compared to the untreated alloys.
Cell culture tests on flat PCL samples indicate that the applied plasma treatment increases cell numbers and improves cell attachment, independent of the used discharge gas.
In vitro cell culture tests also confirmed that the AuNP TN array surface could promote osteoblast cell attachment and proliferation.
In-vitro cell culture tests on the scaffold samples using Human Mesenchymal Stem Cells (hMSCs) demonstrated their biocompatibility and indicated osseointegration potential.
The in-vitro and cell culture tests were also carried out to further evaluate the biological properties.
In vitro cell culture tests showed that cells adhered, proliferated and populated CA/PULL (50/50) scaffolds showing that they are cytocompatible.
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