对 133 种与生理相关的环境化学物质进行生殖毒性筛选和定性。

IF 3.3 4区 医学 Q2 REPRODUCTIVE BIOLOGY
Gurugowtham Ulaganathan , Hui Jiang , Noah Canio , Ashwini Oke , Sujit Silas Armstrong , Dimitri Abrahamsson , Julia R. Varshavsky , Juleen Lam , Courtney Cooper , Joshua F. Robinson , Jennifer C. Fung , Tracey J. Woodruff , Patrick Allard
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引用次数: 0

摘要

生殖是一种功能性结果,依赖于从发育期到成年期的复杂的细胞、组织和器官相互作用。因此,利用线虫等功能可比的生殖模型进行可扩展的创新测试方法,将大大有利于评估环境化学品对生殖的干扰。我们改编了之前描述的利用线虫预测生殖毒性的低通量体内染色体分离试验,并利用可用的公共数据来源(ToxCast、ICE),以高通量的方式筛选和表征了 133 种生理相关的化学品。筛选结果在第二项评估胚胎活力的独立体内试验中得到了进一步验证。共有 13 种化学物质被归类为生殖毒性物质,其中两种活性最强的化学物质属于季铵化合物(QACs)大家族,常用作消毒剂,但生殖毒性数据有限。我们将 elegans 试验结果与 ToxCast 从 700 多种细胞反应试验和 300 多种基于信号通路的试验中收集的体外数据进行了比较。我们没有发现排名靠前和排名靠后的化学品在生物活性或平均效力(AC50)方面存在差异。不过,分类化学品的预期靶标类别有显著差异,尤其是高 Z 值化学品的类固醇激素靶标比例过高。综上所述,这些结果表明了体内模型在高通量生殖毒性评估中的价值,以及优先评估 QACs 对生殖影响的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Screening and characterization of 133 physiologically-relevant environmental chemicals for reproductive toxicity

Reproduction is a functional outcome that relies on complex cellular, tissue, and organ interactions that span the developmental period to adulthood. Thus, the assessment of its disruption by environmental chemicals would benefit significantly from scalable and innovative approaches to testing using functionally comparable reproductive models such as the nematode C. elegans. We adapted a previously described low-throughput in vivo chromosome segregation assay using C. elegans predictive of reproductive toxicity and leveraged available public data sources (ToxCast, ICE) to screen and characterize 133 physiologically-relevant chemicals in a high-throughput manner. The screening outcome was further validated in a second, independent in vivo assay assessing embryonic viability. In total, 13 chemicals were classified as reproductive toxicants with the two most active chemicals belonging to the large family of Quaternary Ammonium Compounds (QACs) commonly used as disinfectants but with limited available reproductive toxicity data. We compared the results from the C. elegans assay with ToxCast in vitro data compiled from 700+ cell response assays and 300+ signaling pathways-based assays. We did not observe a difference in the bioactivity or in the average potency (AC50) between the top and bottom chemicals. However, the intended target categories were significantly different between the classified chemicals with, in particular, an over-representation of steroid hormone targets for the high Z-score chemicals. Taken together, these results point to the value of in vivo models that scale to high-throughput level for reproductive toxicity assessment and to the need to prioritize the assessment of QACs impacts on reproduction.

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来源期刊
Reproductive toxicology
Reproductive toxicology 生物-毒理学
CiteScore
6.50
自引率
3.00%
发文量
131
审稿时长
45 days
期刊介绍: Drawing from a large number of disciplines, Reproductive Toxicology publishes timely, original research on the influence of chemical and physical agents on reproduction. Written by and for obstetricians, pediatricians, embryologists, teratologists, geneticists, toxicologists, andrologists, and others interested in detecting potential reproductive hazards, the journal is a forum for communication among researchers and practitioners. Articles focus on the application of in vitro, animal and clinical research to the practice of clinical medicine. All aspects of reproduction are within the scope of Reproductive Toxicology, including the formation and maturation of male and female gametes, sexual function, the events surrounding the fusion of gametes and the development of the fertilized ovum, nourishment and transport of the conceptus within the genital tract, implantation, embryogenesis, intrauterine growth, placentation and placental function, parturition, lactation and neonatal survival. Adverse reproductive effects in males will be considered as significant as adverse effects occurring in females. To provide a balanced presentation of approaches, equal emphasis will be given to clinical and animal or in vitro work. Typical end points that will be studied by contributors include infertility, sexual dysfunction, spontaneous abortion, malformations, abnormal histogenesis, stillbirth, intrauterine growth retardation, prematurity, behavioral abnormalities, and perinatal mortality.
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