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An improved oxidation behavior of coated plates in comparison with that of pure molybdenum was observed.
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The preparation of coated plates and their characterisation by various methods of physicochemical analysis are described.
Cell suspensions were seeded into wells of coated plates and incubated at 37°C for 2 h.
Microhardness and corrosion behavior of coated samples were also investigated.
Osteoblast behavior was examined on coated plates using two tests: in Test 1, plates coated only with POL were seeded with hOBs onto at a density of 2 × 10 cells/cm; in Test 2, hOBs were seeded at the same density onto plates coated with POL and nHA powder.
The weak binding of CTH1-specific antibodies to the whole EB preparation could be explained by a relatively low concentration of CT443 and CT521 in the ELISA wells of EB coated plates compared to CTH1 coated plates.
Subsequent cultures after dissociation of primary spheres were plated in 1% coated plates at a density of 1000 cells/ml.
All reagents used and protein coated plates were part of the kit.
XPS and Raman characteristics of deposits were the same than for coated plates and VOx/TiO2 powders.
In the presence of β2 GPI, EY2C9 bound to CL coated plates.
At the same time, another batch of cells was treated similarly on laminin coated plates.
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