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首页> 外文期刊>Neurotoxicology >Multi-well microelectrode array recordings detect neuroactivity of ToxCast compounds
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Multi-well microelectrode array recordings detect neuroactivity of ToxCast compounds

机译:多孔微电极阵列记录可检测ToxCast化合物的神经活性

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Spontaneous activity in neuronal cultures on microelectrode arrays (MEAs) is sensitive to effects of drugs, chemicals, and particles. Multi-well MEA (mwMEA) systems have increased throughput of MEAs, enabling their use for chemical screening. The present experiments examined a subset of EPA's ToxCast compounds for effects on spontaneous neuronal activity in primary cortical cultures using 48-well MEA plates. A first cohort of 68 compounds was selected from the ToxCast Phase I and II libraries; 37 were positive in one or more of 20 individual ToxCast Novascreen assays related to ion channels (NVS_IC), with the remainder selected based on known neuroactivity. A second cohort of 25 compounds was then tested with 20 originating from the ToxCast Phase I and II libraries (not hits in NVS_IC assays) and 5 known negatives from commercial vendors. Baseline activity (1 h) was recorded prior to exposing the networks to compounds for 1 h, and the weighted mean firing rate (wMFR) was determined in the absence and presence of each compound. Compounds that altered activity by greater than the weighted change of DMSO-treated wells plus 2SD were considered "hits". Of the first set of 68 compounds, 54 altered wMFR by more than the threshold, while in the second set, 13/25 compounds were hits. MEAs detected 30 of 37 (81.1%) compounds that were hits in NVS_IC assays, as well as detected known neurotoxicants that were negative in NVS_IC assays, primarily pyrethroids and GABA(A) receptor antagonists. Conversely, wMFR of cortical neuronal networks on MEAs was insensitive to nicotinic compounds, as only one neonicotinoid was detected by MEAs; this accounts for the bulk of non-concordant compounds between MEA and NVS_IC assays. These data demonstrate that mwMEAs can be used to screen chemicals efficiently for potential neurotoxicity, and that the results are concordant with predictions from ToxCast NVS_IC assays for interactions with ion channels. Published by Elsevier Inc.
机译:微电极阵列(MEA)上神经元培养物中的自发活动对药物,化学物质和颗粒的影响敏感。多孔MEA(mwMEA)系统提高了MEA的通量,使其能够用于化学筛选。本实验使用48孔MEA板检查了一部分EPA ToxCast化合物对原代皮层培养物中自发神经元活性的影响。从ToxCast阶段I和II库中选择了68种化合物的第一个队列;在与离子通道(NVS_IC)相关的20种单独的ToxCast Novascreen检测中,一项或多项检测为37例阳性,其余的则根据已知的神经活性进行选择。然后测试了第二批25种化合物,其中有20种来自ToxCast I和II期库(在NVS_IC分析中未命中)和5种来自商业供应商的已知阴性。在将网络暴露于化合物1 h之前记录基线活性(1 h),并在每种化合物不存在和存在下测定加权平均燃烧速率(wMFR)。活性变化大于DMSO处理的孔加2SD的加权变化的化合物被视为“命中”。在第一组68种化合物中,有54种化合物的wMFR改变超过阈值,而在第二组中,有13/25种化合物被命中。 MEAs检测了在NVS_IC分析中命中的37种化合物中的30种(81.1%),以及在NVS_IC分析中检测到阴性的已知神经毒物,主要是拟除虫菊酯和GABA(A)受体拮抗剂。相反,MEAs上的皮质神经元网络的wMFR对烟碱类化合物不敏感,因为MEAs仅检测到一种新烟碱。这说明了MEA和NVS_IC分析之间存在大量不一致的化合物。这些数据表明,mwMEA可用于有效地筛选潜在神经毒性的化学物质,并且结果与ToxCast NVS_IC分析与离子通道相互作用的预测一致。由Elsevier Inc.发布

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