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Cytocompatibility and Uptake of Halloysite Clay Nanotubes

Biomacromolecules · 2010 · Vol. 11(3) · pp. 820–826
Viviana VergaroElshad AbdullayevYuri LvovAndre ZeitounR. CingolaniR. RinaldiStefano Leporatti

Abstract

Halloysite is aluminosilicate clay with hollow tubular structure of 50 nm external diameter and 15 nm diameter lumen. Halloysite biocompatibility study is important for its potential applications in polymer composites, bone implants, controlled drug delivery, and for protective coating (e.g., anticorrosion or antimolding). Halloysite nanotubes were added to different cell cultures for toxicity tests. Its fluorescence functionalization by aminopropyltriethosilane (APTES) and with fluorescently labeled polyelectrolyte layers allowed following halloysite uptake by the cells with confocal laser scanning microscopy (CLSM). Quantitative Trypan blue and MTT measurements performed with two neoplastic cell lines model systems as a function of the nanotubes concentration and incubation time indicate that halloysite exhibits a high level of biocompatibility and very low cytotoxicity, rendering it a good candidate for household materials and medicine. A combination of transmission electron microscopy (TEM), scanning electron microscopy (SEM), and scanning force microscopy (SFM) imaging techniques have been employed to elucidate the structure of halloysite nanotubes.

Clay minerals and soil interactionsTherapeutic Uses of Natural ElementsIron oxide chemistry and applicationsHalloysiteBiocompatibilityScanning electron microscopeMaterials scienceTransmission electron microscopyTrypan blueNanotechnologyChemical engineeringFluorescence microscopeAluminosilicate

MeSH terms

ClayAluminum SilicatesHumansMicroscopy, Electron, ScanningNanotubesCell Line, TumorMicroscopy, Electron, Transmission
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References
<scp>WSXM</scp>: A software for scanning probe microscopy and a tool for nanotechnology
Review of Scientific Instruments · 2007 · 7,593 citations
Toxic Potential of Materials at the Nanolevel
Science · 2006 · 9,132 citations
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