Interactions of silica nanoparticles with lung epithelial cells and the association to flotillins
Open Access
- 6 June 2012
- journal article
- research article
- Published by Springer Nature in Archives of Toxicology
- Vol. 87 (6), 1053-1065
- https://doi.org/10.1007/s00204-012-0876-5
Abstract
Amorphous silica nanoparticles (aSNPs) gain increasing popularity for industrial and therapeutic claims. The lung with its surface area of 100–140 m2 displays an ideal target for therapeutic approaches, but it represents also a serious area of attack for harmful nanomaterials. The exact nature of the cytotoxic effects of NPs is still unknown. Furthermore, cellular pathways and the destiny of internalized NPs are still poorly understood. Therefore, we examined the cytotoxicity (MTS, LDH) and inflammatory responses (IL-8) for different-sized aSNPs (30, 70, 300 nm) on our lung epithelial cells line NCI H441 and endothelial cell line ISO-HAS-1. Additionally, colocalization studies have been conducted via immunofluorescence staining for flotillin-1- and flotillin-2-bearing endocytic vesicles. Subsequently, the relevance of flotillins concerning the viability of aSNP-exposed epithelial cells has been evaluated using flotillin-1/2 depleted cells (siRNA). This study reveals the relevance of the nanoparticle size regarding cytotoxicity (MTS, LDH) and inflammatory responses (IL-8), whereat the smaller the size of the nanoparticle is, the more harmful are the effects. All different aSNP sizes have been incorporated in flotillin-1- and flotillin-2-labelled vesicles in lung epithelial and endothelial cells, which display a marker for late endosomal or lysosomal structures and appear to exhibit a clathrin- or caveolae-independent mode of endocytosis. Flotillin-depleted H441 showed a clearly decreased uptake of aSNPs. Additionally, the viability of aSNP-exposed cells was reduced in these cells. These findings indicate a contribution of flotillins in as yet unknown (clathrin or caveolae-independent) endocytosis mechanisms and (or) endosomal storage.Keywords
This publication has 31 references indexed in Scilit:
- Understanding and controlling the interaction of nanomaterials with proteins in a physiological environmentChemical Society Reviews, 2011
- Inflammatory and cytotoxic responses of an alveolar-capillary coculture model to silica nanoparticles: Comparison with conventional monoculturesParticle and Fibre Toxicology, 2011
- Effect of surface properties of silica nanoparticles on their cytotoxicity and cellular distribution in murine macrophagesNanoscale Research Letters, 2011
- A complementary definition of nanomaterialNano Today, 2010
- An impaired alveolar-capillary barrier in vitro : effect of proinflammatory cytokines and consequences on nanocarrier interactionJournal of The Royal Society Interface, 2009
- Basolateral Internalization of GPI-anchored Proteins Occurs via a Clathrin-independent Flotillin-dependent Pathway in Polarized Hepatic CellsMolecular Biology of the Cell, 2009
- Macrophage Responses to Silica Nanoparticles are Highly Conserved Across Particle SizesToxicological Sciences, 2008
- Intracellular Delivery of Nanoparticles of an Antiasthmatic DrugAAPS PharmSciTech, 2008
- Inflammatory mediators induced by intratracheal instillation of ultrafine amorphous silica particlesToxicology Letters, 2007
- Nanotoxicology: An Emerging Discipline Evolving from Studies of Ultrafine ParticlesEnvironmental Health Perspectives, 2005