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Beilstein J. Nanotechnol. 2015, 6, 517–528, doi:10.3762/bjnano.6.54
Figure 1: Comparison of cytotoxic effects on A549 after 4 h stimulation with aSNPs displaying different surfa...
Figure 2: Cellular uptake of aSNPs with different surfaces in A549 (–plain, –NH2, –COOH; 50 µg/mL). The cells...
Figure 3: Comparison of cytotoxic effects on A549 after 4 h stimulation with different aSNPs (–plain, –NH2, –...
Figure 4: Comparison of inflammatory responses of A549 after stimulation with different aSNPs (–plain, –NH2, ...
Figure 5: Reactive oxygen species (ROS) production in A549 after stimulation with different aSNPs (–plain, –NH...
Figure 6: Cytotoxicity and inflammatory responses of aSNP–plain (100 µg/mL) in combination with alveolar surf...
Figure 7: Cellular uptake of aSNP–plain (100 µg/mL, 4 h/20 h) in combination with Alveofact® (0.04 mg/mL) was...
Beilstein J. Nanotechnol. 2014, 5, 1774–1786, doi:10.3762/bjnano.5.188
Scheme 1: Schematic illustration of the synthesis routes for the preparation of quaternized and/or PEGylated ...
Figure 1: TEM micrographs of NexSil20 and POS-NH2 nanoparticles after dry preparation from an aqueous dispers...
Figure 2: Apparent self-diffusion coefficients (Ds,app) from angular-dependent DLS measurements with respect ...
Figure 3: Multicomponent analysis [28] to evaluate the DLS measurement of the mixture of amorphous silica nanopar...
Figure 4: AF-FFF fractograms for NexSil20. Blue: NexSil20 prepared in RPMI cell medium; Red: NexSil20 prepare...