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Evaluation of the cell viability via MTT assay.
The dynamics of nucleic acids synthesis in growing E. coli cells has been analyzed using vital fluorescent stain SYTO 9. A special function has been suggested for evaluation of the cell growth parameters.
It is found that the effect of collision term is considered in the evaluation of the cell interface distribution function in both schemes, which explains why they can overcome the time step restriction and can give accurate results even as the time step is much larger than the collision time.
Fig. 4 Evaluation of the cell viability by MTT assay using the optical density value.
For the evaluation of the cell adherence (normalized to standard cell culture dishes), cell proliferation (normalized to cell number at day 1 of cell culture) relative cell numbers were calculated.
Evaluation of the cell counts demonstrated that the WBC counts were significantly better maintained in all of the UFH, LMWH, and argatroban groups, with the effect being more prominent in the high-dose UFH subgroup than in the low-dose UFH subgroup (Fig. 2, upper left).
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The TEP examination in vitro was based on the evaluation of cell number, cell phenotype and cell distribution within the scaffold.
Simultaneous measurements of flow rates and volumes allowed for evaluation of the cells' hydraulic performances and estimation of pollutant load removal efficiencies and EMC reductions.
As MSCs can transdifferentiate to Schwann cell-phenotypes and accelerate nerve regeneration we undertook proteomic evaluation of the cells to uncover the protein contents that affects Schwann cell formulation.
For evaluation of the cell-killing efficacy of CCF, MTT assay was performed on U87, U251, and DBTRG-05MG glioblastoma cell lines.
Immunophenotypic evaluation of the cells in lymph nodes showed no significant difference between HME cases and controls for CD68, CD4, and CD20 staining.
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