Rotenone exerts developmental neurotoxicity in a human brain spheroid model

被引:97
作者
Pamies, David [1 ]
Block, Katharina [1 ]
Lau, Pierre [2 ]
Gribaldo, Laura [2 ]
Pardo, Carlos A. [3 ]
Barreras, Paula [3 ]
Smirnova, Lena [1 ]
Wiersma, Daphne [1 ]
Zhao, Liang [1 ,4 ]
Harris, Georgina [1 ]
Hartung, Thomas [1 ,5 ]
Hogberg, Helena T. [1 ]
机构
[1] Johns Hopkins Univ, CAAT, 615 North Wolfe St, Baltimore, MD 21205 USA
[2] European Ctr Validat Alternat Methods EURL ECVAM, Joint Res Ctr, European Commiss, European Reference Lab, Via Enrico Fermi 2749, I-21027 Ispra, VA, Italy
[3] Johns Hopkins Univ, Dept Neurol, 600 N Wolfe St, Baltimore, MD 21287 USA
[4] Johns Hopkins Univ, Sidney Kimmel Comprehens Canc Ctr, Bloomberg Kimmel Inst Canc Immunotherapy, 650 Orleans St,CRB1,Rm 464, Baltimore, MD 21287 USA
[5] Univ Konstanz, CAAT Europe, Univ Str 10, D-78464 Constance, Germany
关键词
Spheroids; DNT; Developmental neurotoxicity; Organoids; Rotenone; In Vitro; PLURIPOTENT STEM-CELLS; STAKEHOLDER NETWORK ISTNET; PARKINSONS-DISEASE; MITOCHONDRIAL DYSFUNCTION; DOPAMINERGIC-NEURONS; ALTERNATIVE METHODS; INDUCED APOPTOSIS; RNA ISOLATION; NRF2; PATHWAY; CALCIUM;
D O I
10.1016/j.taap.2018.02.003
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Growing concern suggests that some chemicals exert (developmental) neurotoxicity (DNT and NT) and are linked to the increase in incidence of autism, attention deficit and hyperactivity disorders. The high cost of routine tests for DNT and NT assessment make it difficult to test the high numbers of existing chemicals. Thus, more cost effective neurodevelopmental models are needed. The use of induced pluripotent stem cells (iPSC) in combination with the emerging human 3D tissue culture platforms, present a novel tool to predict and study human toxicity. By combining these technologies, we generated multicellular brain spheroids (BrainSpheres) from human iPSC. The model has previously shown to be reproducible and recapitulates several neurodevelopmental features. Our results indicate, rotenone's toxic potency varies depending on the differentiation status of the cells, showing higher reactive oxygen species (ROS) and higher mitochondrial dysfunction during early than later differentiation stages. Immuno-fluorescence morphology analysis after rotenone exposure indicated dopaminergic-neuron selective toxicity at non-cytotoxic concentrations (1 mu M), while astrocytes and other neuronal cell types were affected at (general) cytotoxic concentrations (25 mu M). Omics analysis showed changes in key pathways necessary for brain development, indicating rotenone as a developmental neurotoxicant and show a possible link between previously shown effects on neurite outgrowth and presently observed effects on Ca2 + reabsorption, synaptogenesis and PPAR pathway disruption. In conclusion, our BrainSpheres model has shown to be a reproducible and novel tool to study neurotoxicity and developmental neurotoxicity. Results presented here support the idea that rotenone can potentially be a developmental neurotoxicant.
引用
收藏
页码:101 / 114
页数:14
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