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Interlaboratory evaluation of a multiplexed high information content in vitro genotoxicity assay.
Bryce, Steven M; Bernacki, Derek T; Bemis, Jeffrey C; Spellman, Richard A; Engel, Maria E; Schuler, Maik; Lorge, Elisabeth; Heikkinen, Pekka T; Hemmann, Ulrike; Thybaud, Véronique; Wilde, Sabrina; Queisser, Nina; Sutter, Andreas; Zeller, Andreas; Guérard, Melanie; Kirkland, David; Dertinger, Stephen D.
Affiliation
  • Bryce SM; Litron Laboratories, Rochester, New York.
  • Bernacki DT; Litron Laboratories, Rochester, New York.
  • Bemis JC; Litron Laboratories, Rochester, New York.
  • Spellman RA; Pfizer Worldwide Research and Development, Groton, Connecticut.
  • Engel ME; Pfizer Worldwide Research and Development, Groton, Connecticut.
  • Schuler M; Pfizer Worldwide Research and Development, Groton, Connecticut.
  • Lorge E; Servier Group, Gidy, France.
  • Heikkinen PT; Orion Pharma, Espoo, Finland.
  • Hemmann U; Sanofi-Aventis Deutschland GmbH, Frankfurt, Germany.
  • Thybaud V; Sanofi, Vitry-sur-Seine, France.
  • Wilde S; Bayer AG, Berlin, Germany.
  • Queisser N; Bayer AG, Berlin, Germany.
  • Sutter A; Bayer AG, Berlin, Germany.
  • Zeller A; Roche Pharma Research and Early Development, Basel, Switzerland.
  • Guérard M; Roche Pharma Research and Early Development, Basel, Switzerland.
  • Kirkland D; Kirkland Consulting, Tadcaster, United Kingdom.
  • Dertinger SD; Litron Laboratories, Rochester, New York.
Environ Mol Mutagen ; 58(3): 146-161, 2017 04.
Article in En | MEDLINE | ID: mdl-28370322
ABSTRACT
We previously described a multiplexed in vitro genotoxicity assay based on flow cytometric analysis of detergent-liberated nuclei that are simultaneously stained with propidium iodide and labeled with fluorescent antibodies against p53, γH2AX, and phospho-histone H3. Inclusion of a known number of microspheres provides absolute nuclei counts. The work described herein was undertaken to evaluate the interlaboratory transferability of this assay, commercially known as MultiFlow® DNA Damage Kit-p53, γH2AX, Phospho-Histone H3. For these experiments, seven laboratories studied reference chemicals from a group of 84 representing clastogens, aneugens, and nongenotoxicants. TK6 cells were exposed to chemicals in 96-well plates over a range of concentrations for 24 hr. At 4 and 24 hr, cell aliquots were added to the MultiFlow reagent mix and following a brief incubation period flow cytometric analysis occurred, in most cases directly from a 96-well plate via a robotic walk-away data acquisition system. Multiplexed response data were evaluated using two analysis approaches, one based on global evaluation factors (i.e., cutoff values derived from all interlaboratory data), and a second based on multinomial logistic regression that considers multiple biomarkers simultaneously. Both data analysis strategies were devised to categorize chemicals as predominately exhibiting a clastogenic, aneugenic, or nongenotoxic mode of action (MoA). Based on the aggregate 231 experiments that were performed, assay sensitivity, specificity, and concordance in relation to a priori MoA grouping were ≥ 92%. These results are encouraging as they suggest that two distinct data analysis strategies can rapidly and reliably predict new chemicals' predominant genotoxic MoA based on data from an efficient and transferable multiplexed in vitro assay. Environ. Mol. Mutagen. 58146-161, 2017. © 2017 Wiley Periodicals, Inc.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: DNA Damage / Flow Cytometry / Laboratories / Mutagenicity Tests / Mutagens Type of study: Diagnostic_studies / Prognostic_studies / Risk_factors_studies Limits: Animals / Humans Language: En Journal: Environ Mol Mutagen Journal subject: BIOLOGIA MOLECULAR / SAUDE AMBIENTAL Year: 2017 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: DNA Damage / Flow Cytometry / Laboratories / Mutagenicity Tests / Mutagens Type of study: Diagnostic_studies / Prognostic_studies / Risk_factors_studies Limits: Animals / Humans Language: En Journal: Environ Mol Mutagen Journal subject: BIOLOGIA MOLECULAR / SAUDE AMBIENTAL Year: 2017 Document type: Article