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At lower nitrate concentrations there was an increased energy consumption that likely resulted from the electrolysis of water at the lower ionic strength.
On the other hand, in the absence or at low CO2 concentrations there was a considerable increase in lipid and carbohydrate production.
Cytochalasin D at concentrations of 5 and 10 µg/ml inhibited the antigen uptake to more than 90% and at these concentrations there was complete inhibition of infection in DC (Fig. 5B).
However, at these trough concentrations there was expansion of the resistant subpopulation.
At the second and third concentrations there was progressively more adsorption and a low density indicating an open structure with loops and tails stretching from the surface.
While at equimolar drug concentrations there was a 2-fold higher level of total platinum-DNA adducts following exposure to JM335 vs JM149, at equitoxic concentrations, levels were similar (80 vs 70 pmol Pt mg-1 DNA respectively).
In undifferentiated cells, there was little or no effect on DNA synthesis, no shortfall in cell numbers, and no significant lipid peroxidation, although at high concentrations there was a small loss of viability.
Across a range of glucose concentrations there was a slight but not significant (Student's t test) trend to a greater proportion of granule recapture at higher glucose concentrations (Fig. 5b; 6 mmol/l, 11 islets, 166 events; 8 mmol/l, eight islets, 383 events; 15 mmol/l, ten islets, 341 events; 20 mmol/l, 11 islets, 420 events).
When herds with low Se were compared with herds with high Se concentrations there was no difference in concentrate as percentage of energy consumption or milk yield.
For higher concentrations, there was no change in the ASE features (Table 2).
Despite that expected hotspot at high o-xylene concentrations, there was no ignition or explosion of the gas mixture observable.
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