Neurotoxicology Research Group, Division of Toxicology, Institute for Risk Assessment Sciences (IRAS), Faculty of Veterinary Medicine, Utrecht University, P.O. Box 80.177, NL-3508 TD Utrecht, The Netherlands.
Neurotoxicology Research Group, Division of Toxicology, Institute for Risk Assessment Sciences (IRAS), Faculty of Veterinary Medicine, Utrecht University, P.O. Box 80.177, NL-3508 TD Utrecht, The Netherlands.
Toxicol In Vitro. 2017 Dec;45(Pt 1):81-88. doi: 10.1016/j.tiv.2017.07.030. Epub 2017 Jul 31.
Biomedical and (neuro) toxicity research on (neuro) degenerative diseases still relies strongly on animal models. However, the use of laboratory animals is often undesirable for both ethical and technical reasons. Current in vitro research thus largely relies on tumor derived- or immortalized cell lines. Notably, the suitability of cell lines for studying neurodegeneration is determined by their intrinsic properties. We therefore characterized PC12, SH-SY5Y, MES23.5 and N27 cells with respect to the presence of functional membrane ion channels and receptors as well as for the effects of five known neurotoxic pesticides on cytotoxicity, oxidative stress and parameters of intracellular calcium homeostasis using a combined alamar Blue/CFDA assay, a HDCFDA assay and single cell fluorescent (Fura-2) calcium imaging, respectively. Although all pesticides demonstrated a certain level of functional neurotoxicity in the different cell lines, our results also demonstrate considerable differences in intrinsic properties and pesticide-induced effects between the cell lines. This clearly indicates that care should be taken when interpreting (neuro)toxicity data as the chosen cell model may greatly influence the outcome.
在(神经)退行性疾病的生物医学和(神经)毒性研究中,仍然强烈依赖于动物模型。然而,出于伦理和技术原因,实验室动物的使用往往并不理想。因此,目前的体外研究在很大程度上依赖于肿瘤衍生或永生化细胞系。值得注意的是,细胞系用于研究神经退行性变的适宜性取决于其内在特性。因此,我们使用 alamar Blue/CFDA 测定法、HDCFDA 测定法和单细胞荧光(Fura-2)钙成像法,分别研究了 PC12、SH-SY5Y、MES23.5 和 N27 细胞中功能性膜离子通道和受体的存在情况,以及五种已知神经毒性农药对细胞毒性、氧化应激和细胞内钙稳态参数的影响。尽管所有农药在不同细胞系中均表现出一定程度的功能性神经毒性,但我们的结果也表明细胞系之间在内在特性和农药诱导效应方面存在相当大的差异。这清楚地表明,在解释(神经)毒性数据时应谨慎,因为所选的细胞模型可能会极大地影响结果。