| Literature DB >> 23006133 |
Juan A Varela1, Mariana G Bexiga, Christoffer Åberg, Jeremy C Simpson, Kenneth A Dawson.
Abstract
BACKGROUND: Nanoparticles (NPs) are currently used in a wide variety of fields such as technology, medicine and industry. Due to the novelty of these applications and to ensure their success, a precise characterization of the interactions between NPs and cells is essential.Entities:
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Year: 2012 PMID: 23006133 PMCID: PMC3492040 DOI: 10.1186/1477-3155-10-39
Source DB: PubMed Journal: J Nanobiotechnology ISSN: 1477-3155 Impact factor: 10.435
Dynamic light scattering characterization of PS NPs used
| 20 nm | 33 ± 1 | 0.14 | −27 ± 3 |
| 40 nm | 44 ± 1 | 0.13 | −24 ± 3 |
| 100 nm | 114 ± 4 | 0.01 | −34 ± 2 |
All particles were characterized in PBS at pH 7.0 and 25°C.
[a] Polydispersity Index.
Figure 1Assessment of individual nanoparticle size and fluorescence. Automated single NP tracking was performed using a spinning disk confocal microscope. a. Green fluorescent 100 nm NPs were dispersed in glycerol at 40°C and their trajectories imaged and analyzed. NPs are identified as a green spot and the trajectory is displayed by a multicolored line (scale bar corresponds to 3 μm). The NP trajectory enclosed in the white square is shown enlarged below. b. The diffusion coefficients and NP sizes were obtained from the slope of the plots of MSD versus time (linear fits are shown by continuous lines). c. The fluorescence of individual NPs was obtained from the confocal images in order to normalize experiments of NP uptake by cells, using the means of the populations shown in the histograms. A.U. – arbitrary fluorescence units.
Calculated numbers of PS NPs in stocks versus automatic count obtained from 3D confocal microscopy
| 20 nm | 32 | 4.5 × 1015 | 2.2 × 1015 | 1.0 |
| 40 nm | 42 | 1.5 × 1015 | 5.7 × 1014 | 2.3 |
| 100 nm | 92 | 3.6 × 1013 | 3.7 × 1013 | 31.0 |
[a] Single particle tracking.
Figure 2Nanoparticle uptake kinetics in 1321N1 and A549 cells. Cells were incubated with NPs of different sizes maintaining the number of particles constant at 6x1011 particles/mL. a. The full cell population behavior is shown for 1321N1 cells incubated with 40 nm NPs without normalization. As the populations displayed a single peak, the population mean was used for comparisons across the different NP sizes. The kinetics of NP uptake for the three NP sizes is shown for 1321N1 (b) and A549 cells (c). Plotted data points correspond to the average of three independent experiments, each with two replicates. Dashed lines correspond to linear fits. Error bars correspond to standard deviations between the three independent experiments.