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流式细胞术高内涵体外微核试验的实验室间评估

Interlaboratory evaluation of a flow cytometric, high content in vitro micronucleus assay.

作者信息

Bryce Steven M, Avlasevich Svetlana L, Bemis Jeffrey C, Lukamowicz Magdalena, Elhajouji Azeddine, Van Goethem Freddy, De Boeck Marlies, Beerens Dominiek, Aerts Hilde, Van Gompel Jacky, Collins Joanne E, Ellis Patricia C, White Angela T, Lynch Anthony M, Dertinger Stephen D

机构信息

Litron Laboratories, Rochester, NY 14623, USA.

出版信息

Mutat Res. 2008 Feb 29;650(2):181-95. doi: 10.1016/j.mrgentox.2007.11.006. Epub 2007 Nov 29.

Abstract

An international, multi-lab trial was conducted to evaluate a flow cytometry-based method for scoring micronuclei in mouse lymphoma L5178Y cells [S.L. Avlasevich, S.M. Bryce, S.E. Cairns, S.D. Dertinger, In vitro micronucleus scoring by flow cytometry: differential staining of micronuclei versus apoptotic and necrotic chromatin enhances assay reliability, Environ. Mol. Mutagen. 47 (2006) 56-66]. A reference laboratory investigated the potential of six chemicals to induce micronuclei -- the genotoxicants mitomycin C (MMC), etoposide (ETOPO), and vinblastine (VB), and the non-genotoxicants sucrose (SUC), staurosporine (STS), and dexamethasone (DEX). The latter two non-genotoxicants were selected as extreme challenges to the assay because of their potent apoptogenic activity. Three collaborating laboratories were supplied with prototype In Vitro MicroFlow kits, and each was assigned one genotoxicant and one non-genotoxicant. Cells were treated continuously for 24h over a range of concentrations up to 5 mg/ml, or overtly cytotoxic concentrations. Micronuclei were scored via standard microscopy and flow cytometry. In addition to enumerating micronucleus frequencies, a cytotoxicity measurement that is simultaneously acquired with the flow cytometric micronucleus scoring procedure was evaluated (Flow-NBR). With this method, latex particles served as counting beads, and facilitated relative survival measurements that exclude the presence of dead/dying cells. For comparison purposes, additional cytotoxicity endpoints were measured, including several that are based on cell number, and others that reflect compromised membrane integrity, including dye permeability and/or phospholipid distribution. Key findings for this set of compounds include the following: (1) significant discrepancies in top concentration selection were found when cytotoxicity measurements were based on different methods, with the Flow-NBR approach tending to be the most sensitive, (2) both microscopy- and flow cytometry-based scoring methods detected concentration-dependent micronucleus formation for the three genotoxic agents studied, with good agreement between the reference laboratory and the collaborating laboratories, and (3) whereas flow cytometric analyses showed no significant increases for the non-genotoxicants when top concentration selection was based on Flow-NBR, significantly elevated micronucleus frequencies were observed for concentrations that were chosen based on less-sensitive cytotoxicity assays. Collectively, these results indicate that rapid assessment of genotoxicity can be accomplished with a relatively simple flow cytometric technique, and that the scoring system is transferable across laboratories. Furthermore, a concurrent assessment of cytotoxicity, Flow-NBR, may help reduce the occurrence of irrelevant positive results, as it may represent a more appropriate means for choosing top concentration levels. Finally, the data presented herein reinforce concerns about the manner in which cytotoxicity limits are described in guidance documents, since these recommendations tend to cite fixed cut-off values without reference to methodology.

摘要

开展了一项国际多实验室试验,以评估一种基于流式细胞术的方法,用于对小鼠淋巴瘤L5178Y细胞中的微核进行评分[S.L. 阿夫拉谢维奇、S.M. 布赖斯、S.E. 凯恩斯、S.D. 德廷格,通过流式细胞术进行体外微核评分:微核与凋亡和坏死染色质的差异染色提高了检测可靠性,《环境与分子突变》47 (2006) 56 - 66]。一个参考实验室研究了六种化学物质诱导微核的潜力——遗传毒性剂丝裂霉素C(MMC)、依托泊苷(ETOPO)和长春碱(VB),以及非遗传毒性剂蔗糖(SUC)、星形孢菌素(STS)和地塞米松(DEX)。后两种非遗传毒性剂因其强大的凋亡活性而被选为对该检测的极端挑战。向三个合作实验室提供了原型体外微流试剂盒,每个实验室被分配一种遗传毒性剂和一种非遗传毒性剂。细胞在高达5 mg/ml的一系列浓度下或明显的细胞毒性浓度下连续处理24小时。通过标准显微镜和流式细胞术对微核进行评分。除了计算微核频率外,还评估了与流式细胞术微核评分程序同时获得的细胞毒性测量值(Flow - NBR)。使用这种方法,乳胶颗粒用作计数珠,并有助于进行相对存活测量,排除死亡/濒死细胞的存在。为了进行比较,还测量了其他细胞毒性终点,包括一些基于细胞数量的终点,以及其他反映膜完整性受损的终点,包括染料渗透性和/或磷脂分布。这组化合物的主要发现如下:(1)当基于不同方法进行细胞毒性测量时,在最高浓度选择上发现了显著差异,Flow - NBR方法往往是最敏感的;(2)基于显微镜和流式细胞术的评分方法均检测到了所研究的三种遗传毒性剂的浓度依赖性微核形成,参考实验室与合作实验室之间具有良好的一致性;(3)虽然当基于Flow - NBR选择最高浓度时,流式细胞术分析显示非遗传毒性剂没有显著增加,但基于不太敏感的细胞毒性检测选择的浓度下观察到微核频率显著升高。总体而言,这些结果表明,可以用一种相对简单的流式细胞术技术快速评估遗传毒性,并且评分系统可在不同实验室之间转移。此外,同时评估细胞毒性的Flow - NBR可能有助于减少无关阳性结果的出现,因为它可能是选择最高浓度水平的更合适方法。最后,本文提供的数据强化了对指导文件中描述细胞毒性限值方式的担忧,因为这些建议往往引用固定的截止值而未提及方法。

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本文引用的文献

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Cytotoxicity in cultured mammalian cells is a function of the method used to estimate it.
Mutagenesis. 2007 Jul;22(4):275-80. doi: 10.1093/mutage/gem013. Epub 2007 Apr 24.
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In vitro micronucleus assay scored by flow cytometry provides a comprehensive evaluation of cytogenetic damage and cytotoxicity.
Mutat Res. 2007 Jun 15;630(1-2):78-91. doi: 10.1016/j.mrgentox.2007.03.002. Epub 2007 Mar 19.
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SFTG international collaborative study on in vitro micronucleus test I. General conditions and overall conclusions of the study.
Mutat Res. 2006 Aug 4;607(1):13-36. doi: 10.1016/j.mrgentox.2006.04.006. Epub 2006 Jun 30.

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