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Improving Quality in Nanoparticle-Induced Cytotoxicity Testing by a Tiered Inter-Laboratory Comparison Study.
Nelissen, Inge; Haase, Andrea; Anguissola, Sergio; Rocks, Louise; Jacobs, An; Willems, Hanny; Riebeling, Christian; Luch, Andreas; Piret, Jean-Pascal; Toussaint, Olivier; Trouiller, Bénédicte; Lacroix, Ghislaine; Gutleb, Arno C; Contal, Servane; Diabaté, Silvia; Weiss, Carsten; Lozano-Fernández, Tamara; González-Fernández, África; Dusinska, Maria; Huk, Anna; Stone, Vicki; Kanase, Nilesh; Nocun, Marek; Stepnik, Maciej; Meschini, Stefania; Ammendolia, Maria Grazia; Lewinski, Nastassja; Riediker, Michael; Venturini, Marco; Benetti, Federico; Topinka, Jan; Brzicova, Tana; Milani, Silvia; Rädler, Joachim; Salvati, Anna; Dawson, Kenneth A.
  • Nelissen I; Health Department, Flemish Institute for Technological Research (VITO), Boeretang 200, 2400 Mol, Belgium.
  • Haase A; Department of Chemicals and Product Safety, German Federal Institute for Risk Assessment (BfR), Max-Dohrn-Strasse 8-10, 10589 Berlin, Germany.
  • Anguissola S; Centre for BioNano Interactions, University College Dublin (UCD), Belfield, Dublin 4, Ireland.
  • Rocks L; Charles River Laboratories, Carrowntreila, Ballina, Co. Mayo, Ireland.
  • Jacobs A; Centre for BioNano Interactions, University College Dublin (UCD), Belfield, Dublin 4, Ireland.
  • Willems H; Science Foundation Ireland, Three Park Place, Hatch Street Upper, Dublin 2, Ireland.
  • Riebeling C; Health Department, Flemish Institute for Technological Research (VITO), Boeretang 200, 2400 Mol, Belgium.
  • Luch A; Health Department, Flemish Institute for Technological Research (VITO), Boeretang 200, 2400 Mol, Belgium.
  • Piret JP; Department of Chemicals and Product Safety, German Federal Institute for Risk Assessment (BfR), Max-Dohrn-Strasse 8-10, 10589 Berlin, Germany.
  • Toussaint O; Department of Chemicals and Product Safety, German Federal Institute for Risk Assessment (BfR), Max-Dohrn-Strasse 8-10, 10589 Berlin, Germany.
  • Trouiller B; Research Unit in Cellular Biology (URBC), Namur Nanosafety Center (NNC), Namur Research Institute for Life Sciences (NARILIS), University of Namur (UNamur), rue de Bruxelles 61, 5000 Namur, Belgium.
  • Lacroix G; Research Unit in Cellular Biology (URBC), Namur Nanosafety Center (NNC), Namur Research Institute for Life Sciences (NARILIS), University of Namur (UNamur), rue de Bruxelles 61, 5000 Namur, Belgium.
  • Gutleb AC; Experimental Toxicology Unit, Institut National de l'Environnement Industriel et des Risques (INERIS), Parc Alata, BP2, 60550 Verneuil-en-Halatte, France.
  • Contal S; Experimental Toxicology Unit, Institut National de l'Environnement Industriel et des Risques (INERIS), Parc Alata, BP2, 60550 Verneuil-en-Halatte, France.
  • Diabaté S; Environmental Research and Innovation (ERIN) Department, Luxembourg Institute of Science and Technology (LIST), 41, rue du Brill, L-4422 Belvaux, Luxembourg.
  • Weiss C; Environmental Research and Innovation (ERIN) Department, Luxembourg Institute of Science and Technology (LIST), 41, rue du Brill, L-4422 Belvaux, Luxembourg.
  • Lozano-Fernández T; Institute of Toxicology and Genetics, Karlsruhe Institute of Technology (KIT), Hermann-von-Helmholtz-Platz 1, 76344 Eggenstein-Leopoldshafen, Germany.
  • González-Fernández Á; Institute of Toxicology and Genetics, Karlsruhe Institute of Technology (KIT), Hermann-von-Helmholtz-Platz 1, 76344 Eggenstein-Leopoldshafen, Germany.
  • Dusinska M; Biomedical Research Center (CINBIO), University of Vigo, Campus Lagoas Marcosende, 36310 Vigo, Spain.
  • Huk A; Nanoimmunotech SL, Edificio CITEXVI Fonte das Abelleiras s/n, Campus Universitario de Vigo, 36310 Vigo, Pontevedra, Spain.
  • Stone V; Biomedical Research Center (CINBIO), University of Vigo, Campus Lagoas Marcosende, 36310 Vigo, Spain.
  • Kanase N; Instituto de Investigación Sanitaria Galicia Sur (IISGS), Hospital Álvaro Cunqueiro, Estrada Clara Campoamor 341, Babio - Beade, 36312 Vigo, Spain.
  • Nocun M; Health Effects Laboratory, Department of Environmental Chemistry, Norwegian Institute for Air Research (NILU), Instituttveien 18, 2007 Kjeller, Norway.
  • Stepnik M; Health Effects Laboratory, Department of Environmental Chemistry, Norwegian Institute for Air Research (NILU), Instituttveien 18, 2007 Kjeller, Norway.
  • Meschini S; Gentian Diagnostics AS, Bjørnåsveien 5, 1596 Moss, Norway.
  • Ammendolia MG; School of Life Sciences, Heriot-Watt University (HWU), Riccarton Campus, Edinburgh EH14 4AS, UK.
  • Lewinski N; School of Life Sciences, Heriot-Watt University (HWU), Riccarton Campus, Edinburgh EH14 4AS, UK.
  • Riediker M; Department of Toxicology and Carcinogenesis, Nofer Institute of Occupational Medicine (NIOM), 91-348 Lódz, Poland.
  • Venturini M; SEQme s.r.o., Dlouha 176, 26301 Dobris, Czech Republic.
  • Benetti F; Department of Toxicology and Carcinogenesis, Nofer Institute of Occupational Medicine (NIOM), 91-348 Lódz, Poland.
  • Topinka J; National Center for Drug Research and Evaluation and National Center of Innovative Technologies for Public Health, Istituto Superiore di Sanità (ISS), Viale Regina Elena, 299 Rome, Italy.
  • Brzicova T; National Center for Drug Research and Evaluation and National Center of Innovative Technologies for Public Health, Istituto Superiore di Sanità (ISS), Viale Regina Elena, 299 Rome, Italy.
  • Milani S; Institute for Work and Health (IST), University of Lausanne and University of Geneva, Route de la Corniche 2, 1066 Epalinges-Lausanne, Switzerland.
  • Rädler J; Department of Chemical and Life Science Engineering, Virginia Commonwealth University, Richmond, VA 23284, USA.
  • Salvati A; Institute for Work and Health (IST), University of Lausanne and University of Geneva, Route de la Corniche 2, 1066 Epalinges-Lausanne, Switzerland.
  • Dawson KA; Swiss Centre for Occupational and Environmental Health (SCOEH), Binzhofstrasse 87, 8404 Winterthur, Switzerland.
Nanomaterials (Basel) ; 10(8)2020 Jul 22.
Article en En | MEDLINE | ID: mdl-32707981
ABSTRACT
The quality and relevance of nanosafety studies constitute major challenges to ensure their key role as a supporting tool in sustainable innovation, and subsequent competitive economic advantage. However, the number of apparently contradictory and inconclusive research results has increased in the past few years, indicating the need to introduce harmonized protocols and good practices in the nanosafety research community. Therefore, we aimed to evaluate if best-practice training and inter-laboratory comparison (ILC) of performance of the 3-(4,5-dimethylthiazol-2-yl)-5-(3-carboxymethoxyphenyl)-2-(4-sulfophenyl)-2H-tetrazolium (MTS) assay for the cytotoxicity assessment of nanomaterials among 15 European laboratories can improve quality in nanosafety testing. We used two well-described model nanoparticles, 40-nm carboxylated polystyrene (PS-COOH) and 50-nm amino-modified polystyrene (PS-NH2). We followed a tiered approach using well-developed standard operating procedures (SOPs) and sharing the same cells, serum and nanoparticles. We started with determination of the cell growth rate (tier 1), followed by a method transfer phase, in which all laboratories performed the first ILC on the MTS assay (tier 2). Based on the outcome of tier 2 and a survey of laboratory practices, specific training was organized, and the MTS assay SOP was refined. This led to largely improved intra- and inter-laboratory reproducibility in tier 3. In addition, we confirmed that PS-COOH and PS-NH2 are suitable negative and positive control nanoparticles, respectively, to evaluate impact of nanomaterials on cell viability using the MTS assay. Overall, we have demonstrated that the tiered process followed here, with the use of SOPs and representative control nanomaterials, is necessary and makes it possible to achieve good inter-laboratory reproducibility, and therefore high-quality nanotoxicological data.
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Texto completo: 1 Banco de datos: MEDLINE Tipo de estudio: Guideline Idioma: En Año: 2020 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Tipo de estudio: Guideline Idioma: En Año: 2020 Tipo del documento: Article