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Maximum loading efficiency 88.55% was obtained at 43 h of loading time and 1.22 of the weight ratio.
By interfacing nanoparticles with the polymer above, we aimed to find the optimal type of nano-platform which provides the maximum loading efficiency of the drug molecules onto GNP and the highest stability in biologically relevant media.
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The drug loading experiment of Zn-HAp nanoparticles was then confirmed with 1 mol% Zn-HAp (which had the maximum drug loading efficiency with pH responsive drug interaction).
A maximum of 95% loading efficiency (LE) was recorded with a chitosan: alginate ratio at 2 1, followed by 81% at 2 2 ratios.
The maximum loading capacity and entrapment efficiency of 83.69% and 80.51% were attained at a ratio of 5 8 of PTX and Fe3O4@LaF3: Ce3+,Tb3+/chi NPs respectively.
At the maximum loading rate of 77 g/(m3 h), the removal efficiency was 75% marking the maximum elimination capacity for the TBAB at 58.8 g/(m3 h).
maximum loading displacement.
The loading efficiency and loading capacity was determined as follows.
Anti-CD34Ab loading efficiency was 23.57 ± 0.62%.
Dye loading efficiency varies from 30%to80%0%.
This in turn resulted in a higher loading efficiency.
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