鉴定与神经相关的 ToxCast 高通量检测目标基因:适用于神经毒性和神经毒性假定分子启动事件。

IF 3.4 3区 医学 Q2 NEUROSCIENCES Neurotoxicology Pub Date : 2024-07-01 DOI:10.1016/j.neuro.2024.07.001
Cina M. Mack , Alethea Tsui-Bowen , Alicia R. Smith , Karl F. Jensen , Prasada Rao S. Kodavanti , Virginia C. Moser , William R. Mundy , Timothy J. Shafer , David W. Herr
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引用次数: 0

摘要

美国环保局的毒性预报器(ToxCast)是一套高通量体外检测方法,用于筛选环境毒物和预测未定性化学品的潜在毒性。这项工作研究了 ToxCast 检测的预期基因靶标与神经毒剂的假定分子起始事件 (MIE) 的相关性。监管部门和科学界对开发新方法 (NAM) 来筛选大量化学物质的神经毒性和发育神经毒性的兴趣日益浓厚,因此这项工作很有必要。检测基因功能(GeneCards,NCBI-PUBMED)被用来对基因靶点的神经相关性进行分类(1 = 神经,2 = 神经发育,3 = 一般细胞过程,3A = 神经发育过程中关键的细胞过程,4 = 不太可能有意义)。在 481 个独特的基因靶点中,80 个 = 类别 1(16.6%);16 个 = 类别 2(3.3%);303 个 = 类别 3(63.0%);97 个 = 类别 3A(20.2%);82 个 = 类别 4(17.0%)。对具有代表性的神经毒物清单(548 种)进行了研究(如 PUBMED、PubChem),以了解与神经毒性相关的 MIEs/关键事件 (KEs)。结果发现 375 种化合物存在 MIEs,而只有 173 种化合物存在 KEs。与 MIEs 相关的 ToxCast 基因靶点主要是神经递质(如多巴胺能、GABA)和离子通道(钙、钠、钾)受体。相反,许多与神经毒性相关的 MIEs 则不存在。氧化应激(OS)机制占 KEs 的 79.1%。总之,40% 的 ToxCast 检测基因靶标与神经毒性机制有关。我们还确定了更多的受体和离子通道亚型,并增加了 OS 通路的覆盖范围,以便在未来的检测中纳入更多的受体和离子通道亚型,从而在评估神经毒性时更全面地覆盖神经和发育神经靶点。
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Identification of neural-relevant toxcast high-throughput assay intended gene targets: Applicability to neurotoxicity and neurotoxicant putative molecular initiating events

The US EPA’s Toxicity Forecaster (ToxCast) is a suite of high-throughput in vitro assays to screen environmental toxicants and predict potential toxicity of uncharacterized chemicals. This work examines the relevance of ToxCast assay intended gene targets to putative molecular initiating events (MIEs) of neurotoxicants. This effort is needed as there is growing interest in the regulatory and scientific communities about developing new approach methodologies (NAMs) to screen large numbers of chemicals for neurotoxicity and developmental neurotoxicity. Assay gene function (GeneCards, NCBI-PUBMED) was used to categorize gene target neural relevance (1 = neural, 2 = neural development, 3 = general cellular process, 3 A = cellular process critical during neural development, 4 = unlikely significance). Of 481 unique gene targets, 80 = category 1 (16.6 %); 16 = category 2 (3.3 %); 303 = category 3 (63.0 %); 97 = category 3 A (20.2 %); 82 = category 4 (17.0 %). A representative list of neurotoxicants (548) was researched (ex. PUBMED, PubChem) for neurotoxicity associated MIEs/Key Events (KEs). MIEs were identified for 375 compounds, whereas only KEs for 173. ToxCast gene targets associated with MIEs were primarily neurotransmitter (ex. dopaminergic, GABA)receptors and ion channels (calcium, sodium, potassium). Conversely, numerous MIEs associated with neurotoxicity were absent. Oxidative stress (OS) mechanisms were 79.1 % of KEs. In summary, 40 % of ToxCast assay gene targets are relevant to neurotoxicity mechanisms. Additional receptor and ion channel subtypes and increased OS pathway coverage are identified for potential future assay inclusion to provide more complete coverage of neural and developmental neural targets in assessing neurotoxicity.

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来源期刊
Neurotoxicology
Neurotoxicology 医学-毒理学
CiteScore
6.80
自引率
5.90%
发文量
161
审稿时长
70 days
期刊介绍: NeuroToxicology specializes in publishing the best peer-reviewed original research papers dealing with the effects of toxic substances on the nervous system of humans and experimental animals of all ages. The Journal emphasizes papers dealing with the neurotoxic effects of environmentally significant chemical hazards, manufactured drugs and naturally occurring compounds.
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