基于人类ipsc的体外神经网络形成实验研究农药的神经发育毒性。

IF 4.5 2区 医学 Q2 MEDICINE, RESEARCH & EXPERIMENTAL
Kristina Bartmann, Farina Bendt, Arif Dönmez, Daniel Haag, H Eike Keßel, Stefan Masjosthusmann, Christopher Noel, Ji Wu, Peng Zhou, Ellen Fritsche
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引用次数: 2

摘要

正确的大脑发育是基于关键神经发育过程(KNDP)的协调,包括神经网络的形成和功能。如果至少一种KNDP受到某种化学物质的影响,预计会产生不良后果。为了实现比指导动物实验更高的测试吞吐量,建立了一个发育性神经毒性(DNT)体外测试电池(DNT IVB),其中包括多种模拟几种kndp的分析。差距分析显示,需要以人为基础的分析来评估神经网络的形成和功能(NNF)。因此,我们建立了人NNF (hNNF)检测方法。将人诱导多能干细胞(hiPSC)衍生的兴奋性和抑制性神经元以及原代人星形胶质细胞共培养35天,在微电极阵列(MEA)上分化,并在测量前24小时将化合物洗脱后,每周评估一次自发电活动和细胞毒性。除了对测试系统进行表征外,还对28种化合物(主要是杀虫剂)进行了挑战,通过评估特定的峰值、爆发和网络参数来确定它们的DNT潜力。该方法证实了该方法筛选环境化学物质的适用性。将基准浓度(BMC)与基于原代大鼠皮质细胞的NNF体外实验(rNNF)进行比较,发现敏感性存在差异。结合将hNNF数据成功地应用到假设的应激源特异性不良结果通路(AOP)网络中,该网络与溴氰菊酯的一个可能的分子启动事件相关,本研究表明hNNF分析是DNT IVB的有用补充。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A human iPSC-based in vitro neural network formation assay to investigate neurodevelopmental toxicity of pesticides.

Proper brain development is based on the orchestration of key neurodevelopmental processes (KNDP), including the for­mation and function of neural networks. If at least one KNDP is affected by a chemical, an adverse outcome is expected. To enable a higher testing throughput than the guideline animal experiments, a developmental neurotoxicity (DNT) in vitro testing battery (DNT IVB) comprising a variety of assays that model several KNDPs was set up. Gap analysis revealed the need for a human-based assay to assess neural network formation and function (NNF). Therefore, we established the human NNF (hNNF) assay. A co-culture comprised of human induced pluripotent stem cell (hiPSC)-derived excitatory and inhibitory neurons as well as primary human astroglia was differentiated for 35 days on microelectrode arrays (MEA), and spontaneous electrical activity, together with cytotoxicity, was assessed on a weekly basis after washout of the compounds 24 h prior to measurements. In addition to the characterization of the test system, the assay was challenged with 28 com­pounds, mainly pesticides, identifying their DNT potential by evaluating specific spike-, burst-, and network parameters. This approach confirmed the suitability of the assay for screening environmental chemicals. Comparison of benchmark con­centrations (BMC) with an NNF in vitro assay (rNNF) based on primary rat cortical cells revealed differences in sensitivity. Together with the successful implementation of hNNF data into a postulated stressor-specific adverse outcome pathway (AOP) network associated with a plausible molecular initiating event for deltamethrin, this study suggests the hNNF assay as a useful complement to the DNT IVB.

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来源期刊
Altex-Alternatives To Animal Experimentation
Altex-Alternatives To Animal Experimentation MEDICINE, RESEARCH & EXPERIMENTAL-
CiteScore
7.70
自引率
8.90%
发文量
89
审稿时长
2 months
期刊介绍: ALTEX publishes original articles, short communications, reviews, as well as news and comments and meeting reports. Manuscripts submitted to ALTEX are evaluated by two expert reviewers. The evaluation takes into account the scientific merit of a manuscript and its contribution to animal welfare and the 3R principle.
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