| Literature DB >> 25671166 |
Anna Pietuch1, Bastian Rouven Brückner1, David Schneider2, Marco Tarantola3, Christina Rosman4, Carsten Sönnichsen4, Andreas Janshoff1.
Abstract
BACKGROUND: The impact of gold nanoparticles on cell viability has been extensively studied in the past. Size, shape and surface functionalization including opsonization of gold particles ranging from a few nanometers to hundreds of nanometers are among the most crucial parameters that have been focussed on. Cytoxicity of nanomaterial has been assessed by common cytotoxicity assays targeting enzymatic activity such as LDH, MTT and ECIS. So far, however, less attention has been paid to the mechanical parameters of cells exposed to gold particles, which is an important reporter on the cellular response to external stimuli.Entities:
Keywords: CTAB; MDCK II cells; QCM; atomic force microscopy; gold nanorods; membrane tension
Year: 2015 PMID: 25671166 PMCID: PMC4311714 DOI: 10.3762/bjnano.6.21
Source DB: PubMed Journal: Beilstein J Nanotechnol ISSN: 2190-4286 Impact factor: 3.649
Figure 1Confluent MDCK II cells treated with different concentrations of CTAB functionalized gold nanorods. A: untreated cells. B: cells incubated for 24 h with 6 μg/mL CTAB rods. C: cells incubated for 24 h with 24 μg/mL CTAB rods. I: AFM contact mode height images. II: deflection images. III: fluorescence microscopy images of microtubules (green) and nucleus (blue). IV: fluorescence microscopy images of F-actin filaments (red). Scale bar: 10 μm.
Figure 2Dark-field/fluorescence microscopy image (overlay) of confluent MDCK II cells treated with gold nanorods after 24 h. Image 1: Cells exposed to 0.14 μg/mL CTAB coated gold nanorods per mL. Image 2: Cells exposed to 2 μg/mL CTAB coated gold nanorods per mL. Image 3: Cells exposed to 4.0 μg/mL COOH-PEG coated gold nanorods per mL. Image 4: Cells exposed to 4.0 μg/mL NH2-PEG coated gold nanorods per mL. The images are overlayed with a fluorescence images using DAPI (nucleus, blue, *) and ZO-1 (cell borders, green) staining. Arrows indicate the particles (SP: single particle; Ag: aggregate; Cl: cluster, N: nucleus). We refer to clusters as very large aggregates of nanorods. Scale bar: 20 μm.
Figure 3Mechanical analysis of confluent MDCK II cells. Averaged force indentation curves (n > 60) obtained from indentation of confluent MDCK II cells (cell center) treated with different concentrations of CTAB functionalized gold nanospheres after 24 h of incubation (see legend). The force curves are fitted to a Hertzian contact model (green) and tension model (red) as described in the text.
Figure 4An adherent cell or apical membrane of an epithelial cell in confluent environment represented by a spherical cap (dotted line) subject to indentation using a conical indenter (continuous line). Illustration of parameters used in the tension model [28].
Figure 5Young’s moduli of MDCK II cells treated with different concentrations of gold nanorods and CTAB solution.
Figure 6Equilibrium frequency and dissipation change (after 24 h of incubation) of a confluent MDCK II cell monolayer cultured on a 5 MHz quartz (fundamental frequency) as a function of CTAB-coated gold nanorod (A) and CTAB-cated gold nanosphere (B) concentration.