Comparative analysis of micronucleus induction and DNA damage biomarkers in TK6 and A375 cells using flow cytometry

IF 2.3 4区 医学 Q3 ENVIRONMENTAL SCIENCES Environmental and Molecular Mutagenesis Pub Date : 2024-02-09 DOI:10.1002/em.22585
Xiaowen Sun, Richard A. Spellman, Maria Engel, Elizabeth Rubitski, Maik Schuler
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Abstract

Previously, we introduced an alternative adherent A375 cell line for clastogenicity and aneugenicity testing using a high content imaging platform. To further characterize the performance of A375 cells, we investigated the sensitivity and specificity of A375 and TK6 cells by directly comparing micronucleus (MN) induction, cytotoxicity (relative cell counts, viability, and apoptosis), clastogenicity (γH2AX), and aneuploidy markers (pH 3, MPM-2, and polyploidy) using flow cytometric methods. We evaluated 14 compounds across different mechanisms (non-genotoxic apoptosis inducers, clastogens, and aneugens with either tubulin binding or aurora kinase inhibiting phenotypes) at 4-h and 24-h post treatment. Both aneugens and clastogens tested positive for micronucleus induction in both cell lines. Apoptosis continued to be a confounding factor for flow cytometry-based micronuclei assessment in TK6 cells as evidenced by positive responses by the three cytotoxicants. Conversely, A375 cells were not affected by apoptosis-related false positive signals and did not produce a positive response in the in vitro micronucleus assay. Benchmark dose response (BMD) analysis showed that the induction of micronuclei and biomarkers occurred at similar concentrations in both cell lines for clastogens and aneugens. By showing that A375 cells have similar sensitivity to TK6 cells but a greater specificity, these results provide additional support for A375 cells to be used as an alternative adherent cell line for in vitro genetic toxicology assessment.

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使用流式细胞仪比较分析 TK6 和 A375 细胞中的微核诱导和 DNA 损伤生物标志物。
在此之前,我们利用高内容成像平台引入了另一种粘附的 A375 细胞系,用于进行致畸性和非遗传性测试。为了进一步鉴定 A375 细胞的性能,我们使用流式细胞仪方法直接比较了微核(MN)诱导、细胞毒性(相对细胞数、存活率和凋亡)、致畸性(γH2AX)和非整倍体标记(pH 3、MPM-2 和多倍体),从而研究了 A375 和 TK6 细胞的灵敏度和特异性。我们在处理后 4 小时和 24 小时评估了 14 种不同机制的化合物(非基因毒性凋亡诱导剂、凝集素和具有小管蛋白结合或极光激酶抑制表型的厌氧菌)。在这两种细胞系中,无核苷酸和凝集素的微核诱导检测结果均为阳性。凋亡仍然是基于流式细胞仪评估 TK6 细胞微核的一个干扰因素,三种细胞毒剂的阳性反应证明了这一点。相反,A375 细胞没有受到与凋亡相关的假阳性信号的影响,在体外微核试验中也没有产生阳性反应。基准剂量反应(BMD)分析表明,在两种细胞系中,诱导微核和生物标志物的凝集素和非凝集素浓度相似。这些结果表明,A375 细胞与 TK6 细胞具有相似的灵敏度,但特异性更强,这为将 A375 细胞用作体外遗传毒理学评估的替代粘附细胞系提供了更多支持。
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来源期刊
CiteScore
5.40
自引率
10.70%
发文量
52
审稿时长
12-24 weeks
期刊介绍: Environmental and Molecular Mutagenesis publishes original research manuscripts, reviews and commentaries on topics related to six general areas, with an emphasis on subject matter most suited for the readership of EMM as outlined below. The journal is intended for investigators in fields such as molecular biology, biochemistry, microbiology, genetics and epigenetics, genomics and epigenomics, cancer research, neurobiology, heritable mutation, radiation biology, toxicology, and molecular & environmental epidemiology.
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