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首页> 外文期刊>Current medicinal chemistry >Embryonic stem cell-based screen for small molecules: cluster analysis reveals four response patterns in developing neural cells.
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Embryonic stem cell-based screen for small molecules: cluster analysis reveals four response patterns in developing neural cells.

机译:基于胚胎干细胞的小分子筛查:聚类分析揭示了发育中的神经细胞的四种反应模式。

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Neural differentiation of embryonic stem cells (ESC) is considered a promising model to perform in vitro testing for neuroactive and neurotoxic compounds. We studied the potential of a dual reporter murine ESC line to identify bioactive and/or toxic compounds. This line expressed firefly luciferase under the control of the neural cell-specific tubulin alpha promoter (TUBA1A), and renilla luciferase under the control of the ubiquitous translation elongation factor 1-alpha-1 (EEF1A1) promoter. During neural differentiation, TUBA1A activity increased, while EEF1A1 activity decreased. We first validated our test system using the known neurotoxin methyl mercury. This compound altered expression of both reporter genes, with ESC-derived neural precursors being affected at markedly lower concentrations than undifferentiated ESCs. Analysis of a library of 1040 bioactive compounds picked up 127 compounds with altered EEF1A1 and/or TUBA1A promoter activity, which were classified in 4 clusters. Cluster 1 (low EEF1A1 and TUBA1A) was the largest cluster, containing many cytostatic drugs, as well as known neurodevelopmental toxicants, psychotropic drugs and endocrine disruptors. Cluster 2 (high EEF1A1, stable TUBA1A) was limited to three sulfonamides. Cluster 3 (high EEF1A1 and TUBA1A) was small, but markedly enriched in neuroactive and neurotoxic compounds. Cluster 4 (stable EEF1A1, high TUBA1A) was heterogeneous, containing endocrine disruptors, neurotoxic and cytostatic drugs. The dual reporter gene assay described here might be a useful addition to in vitro drug testing panels. Our two-dimensional testing strategy provides information on complex response patterns, which could not be achieved by a single marker approach.
机译:胚胎干细胞(ESC)的神经分化被认为是进行神经活性和神经毒性化合物体外测试的有前途的模型。我们研究了双重报告鼠ESC系鉴定生物活性和/或有毒化合物的潜力。该品系在神经细胞特异性微管蛋白α启动子(TUBA1A)的控制下表达萤火虫荧光素酶,并在普遍存在的翻译延伸因子1-alpha-1(EEF1A1)启动子的控制下表达海肾萤光素酶。在神经分化过程中,TUBA1A活性升高,而EEF1A1活性降低。我们首先使用已知的神经毒素甲基汞验证了我们的测试系统。该化合物改变了两个报告基因的表达,与未分化的ESC相比,来自ESC的神经前体的浓度明显降低。对1040种生物活性化合物的文库进行分析,发现127种具有改变的EEF1A1和/或TUBA1A启动子活性的化合物,将其分为4类。第一组(低EEF1A1和TUBA1A)是最大的组,包含许多抑制细胞生长的药物,以及已知的神经发育毒物,精神药物和内分泌干扰物。群集2(高EEF1A1,稳定的TUBA1A)仅限于三种磺酰胺。簇3(高EEF1A1和TUBA1A)很小,但明显富含神经活性和神经毒性化合物。簇4(稳定的EEF1A1,高TUBA1A)是异质的,包含内分泌干扰物,神经毒性和抑制细胞生长的药物。此处描述的双重报告基因测定可能是体外药物测试小组的有用补充。我们的二维测试策略可提供有关复杂响应模式的信息,而这是单个标记方法无法实现的。

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