Department of Biology, University of Konstanz, Universitaetsstrasse 10, 78457 Konstanz, Germany.
Arch Toxicol. 2013 Apr;87(4):721-33. doi: 10.1007/s00204-012-0984-2. Epub 2012 Dec 2.
Nanoparticles (NPs) have been shown to accumulate in organs, cross the blood-brain barrier and placenta, and have the potential to elicit developmental neurotoxicity (DNT). Here, we developed a human embryonic stem cell (hESC)-derived 3-dimensional (3-D) in vitro model that allows for testing of potential developmental neurotoxicants. Early central nervous system PAX6(+) precursor cells were generated from hESCs and differentiated further within 3-D structures. The 3-D model was characterized for neural marker expression revealing robust differentiation toward neuronal precursor cells, and gene expression profiling suggested a predominantly forebrain-like development. Altered neural gene expression due to exposure to non-cytotoxic concentrations of the known developmental neurotoxicant, methylmercury, indicated that the 3-D model could detect DNT. To test for specific toxicity of NPs, chemically inert polyethylene NPs (PE-NPs) were chosen. They penetrated deep into the 3-D structures and impacted gene expression at non-cytotoxic concentrations. NOTCH pathway genes such as HES5 and NOTCH1 were reduced in expression, as well as downstream neuronal precursor genes such as NEUROD1 and ASCL1. FOXG1, a patterning marker, was also reduced. As loss of function of these genes results in severe nervous system impairments in mice, our data suggest that the 3-D hESC-derived model could be used to test for Nano-DNT.
纳米颗粒 (NPs) 已被证明会在器官中积累,穿过血脑屏障和胎盘,并有可能引发发育性神经毒性 (DNT)。在这里,我们开发了一种源自人类胚胎干细胞 (hESC) 的 3 维 (3-D) 体外模型,可用于测试潜在的发育性神经毒物。早期中枢神经系统 PAX6(+)前体细胞源自 hESC,并在 3-D 结构中进一步分化。该 3-D 模型的神经标志物表达特征表明其向神经前体细胞的分化能力很强,基因表达谱提示其主要具有前脑样发育特征。由于暴露于已知发育性神经毒物甲基汞的非细胞毒性浓度,神经基因表达发生改变,表明 3-D 模型可检测到 DNT。为了测试 NPs 的特定毒性,选择了化学惰性的聚乙烯 NPs (PE-NPs)。它们深入渗透到 3-D 结构中,并在非细胞毒性浓度下影响基因表达。NOTCH 通路基因如 HES5 和 NOTCH1 的表达减少,下游神经前体细胞基因如 NEUROD1 和 ASCL1 的表达也减少。FOXG1 是一种模式标记物,其表达也减少。由于这些基因的功能丧失会导致小鼠严重的神经系统损伤,我们的数据表明,3-D hESC 衍生模型可用于测试 Nano-DNT。