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Further compression of the smectic phase leads to a crystal (K) phase for concentrations above 300 mg ml−1 (which is beyond the concentration range where experiments have been performed).
This significant inhibitory effect exhibited an initial phase of inhibition for nanomolar concentrations of brevenal, followed by a less potent inhibitory phase for micromolar concentrations (IC50∼2 µM).
Accordingly, the increase in the number of BFTC 905 cells in S phase was significant at 0.5 and 1 mg/ml of GFW (p<0.01), which correlates with a reduction in the number of cells in G2/M phase for these concentrations.
Immunoblot analyses on the upper PEG (P) phases and lower Dextran (D) phases for each concentration used shows that at PEG/Dextran concentrations of 6.3% and above Nrv partitions exclusively into the dextran phase, whereas from 6.0% and below the prominent fraction is found in the PEG fraction.
The resulting aqueous phase was removed for concentration using microcon cartridges (50 bp cutoff YM-10) (Millipore).
The increasing sp2 carbon phase in the initial stages at 4 Pa resulted from the increasing N concentration in the films, while the variation of sp2 carbon phase for stable N concentrations is attributed to the modification of CN bonds.
The Al-Ge-O-N coatings consisted of a nanocrystalline wurzite-type (Al1-xGex)(N1-yOy) solid solution phase for low oxygen concentrations with a possible co-existence of an amorphous Ge-N matrix phase.
Finally, to confirm the effect on G2/M transition, we determined the proportion of those cells in M phase for different O2 concentrations using the mitosis specific marker phospho-histone H3.
The phase separation concentration threshold for both scaled linearly with ionic strength as the NaCl concentration was increased.
Gas phase concentrations for all odorants were calculated using published vapor pressure values and formulae provided by [12].
The comparison showed that all the values were in good agreement and all interactions of the chosen variables are significant except for the internal phase concentration and initial feed phase concentration.
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