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DOI10.1093/toxsci/kfw092
Analysis of the Effects of Cell Stress and Cytotoxicity on In Vitro Assay Activity Across a Diverse Chemical and Assay Space
Judson, Richard1; Houck, Keith1; Martin, Matt1; Richard, Ann M.1; Knudsen, Thomas B.1; Shah, Imran1; Little, Stephen1; Wambaugh, John1; Setzer, R. Woodrow1; Kothya, Parth1; Phuong, Jimmy1; Filer, Dayne1; Smith, Doris1; Reif, David2; Rotroff, Daniel2; Kleinstreuer, Nicole3; Sipes, Nisha4; Xia, Menghang5; Huang, Ruili5; Crofton, Kevin1; Thomas, Russell S.1
发表日期2016-08-01
ISSN1096-6080
卷号152期号:2页码:323-339
英文摘要

Chemical toxicity can arise from disruption of specific biomolecular functions or through more generalized cell stress and cytotoxicity-mediated processes. Here, responses of 1060 chemicals including pharmaceuticals, natural products, pesticidals, consumer, and industrial chemicals across a battery of 815 in vitro assay endpoints from 7 high-throughput assay technology platforms were analyzed in order to distinguish between these types of activities. Both cell-based and cell-free assays showed a rapid increase in the frequency of responses at concentrations where cell stress/cytotoxicity responses were observed in cell-based assays. Chemicals that were positive on at least 2 viability/cytotoxicity assays within the concentration range tested (typically up to 100 mu M) activated a median of 12% of assay endpoints whereas those that were not cytotoxic in this concentration range activated 1.3% of the assays endpoints. The results suggest that activity can be broadly divided into: (1) specific biomolecular interactions against one or more targets (eg, receptors or enzymes) at concentrations below which overt cytotoxicity-associated activity is observed; and (2) activity associated with cell stress or cytotoxicity, which may result from triggering specific cell stress pathways, chemical reactivity, physico-chemical disruption of proteins or membranes, or broad low-affinity non-covalent interactions. Chemicals showing a greater number of specific biomolecular interactions are generally designed to be bioactive (pharmaceuticals or pesticidal active ingredients), whereas intentional food-use chemicals tended to show the fewest specific interactions. The analyses presented here provide context for use of these data in ongoing studies to predict in vivo toxicity from chemicals lacking extensive hazard assessment.


英文关键词In vitro;high-throughput screening;oxidative stress;cytotoxicity;cell stress
语种英语
WOS记录号WOS:000385300400009
来源期刊TOXICOLOGICAL SCIENCES
来源机构美国环保署
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/60155
作者单位1.US EPA, Natl Ctr Computat Toxicol, Res Triangle Pk, NC 27711 USA;
2.North Carolina State Univ, Dept Stat, Raleigh, NC USA;
3.ILS NICEATM, Res Triangle Pk, NC USA;
4.Natl Toxicol Program, Res Triangle Pk, NC USA;
5.NIH Natl Ctr Adv Translat Sci, Rockville, MD USA
推荐引用方式
GB/T 7714
Judson, Richard,Houck, Keith,Martin, Matt,et al. Analysis of the Effects of Cell Stress and Cytotoxicity on In Vitro Assay Activity Across a Diverse Chemical and Assay Space[J]. 美国环保署,2016,152(2):323-339.
APA Judson, Richard.,Houck, Keith.,Martin, Matt.,Richard, Ann M..,Knudsen, Thomas B..,...&Thomas, Russell S..(2016).Analysis of the Effects of Cell Stress and Cytotoxicity on In Vitro Assay Activity Across a Diverse Chemical and Assay Space.TOXICOLOGICAL SCIENCES,152(2),323-339.
MLA Judson, Richard,et al."Analysis of the Effects of Cell Stress and Cytotoxicity on In Vitro Assay Activity Across a Diverse Chemical and Assay Space".TOXICOLOGICAL SCIENCES 152.2(2016):323-339.
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