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It can be observed that most of nanoparticles suspending in the solution have a uniform size.
Most of nanoparticles are taken up by cells through one of the classical uptake pathways, namely through micropinocytosis, clathrin-mediated endocytosis, or caveolin-mediated endocytosis [9].
A mean diameter is 7.5 nm and most of nanoparticles have the diameter ranging from 6 to 9 nm. Figure 5c shows a TEM micrograph of montmorillonite after pristine clay is exfoliated.
At the same time, CF promoted the formation of chain-like structures of nanoparticles and most of nanoparticles gathered in huge assemblies (Fig. 6) remaining stability of violet colloid with λ max = 531 nm.
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It appears that the PEG coating and ligand decoration are common constituents in most types of nanoparticles for cancer.
For most suspensions of nanoparticles, agglomeration and sedimentation of the nanoparticles are unavoidable and the suspension is commonly unstable [20, 21].
At the end of the experiment, sediments accumulated most of the nanoparticles with a recovery of 75.7 ± 27.3% of total ceria nanoparticles, suggesting that sediments are major sinks of ceria nanoparticles.
It is clearly seen that most of Si nanoparticles were less than 10 nm, in good agreement with the above-explained Si nanoparticle size distribution.
Currently, the nanoparticle-based drug delivery to the target tumor tissues is based on wrong assumptions that most of the nanoparticles, either PEGylated or not, reach the target by the enhanced permeation and retention (EPR) effect.
Most of the nanoparticles formed showed a tendency to congregate.
At the end of part II, extrusion deformation has happened for most of the nanoparticles.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com