人神经母细胞瘤SH-SY5Y细胞暴露于50Hz磁场:二维(2D)和三维(3D)体外培养的比较
Exposure of the SH-SY5Y Human Neuroblastoma Cells to 50-Hz Magnetic Field: Comparison Between Two-Dimensional (2D) and Three-Dimensional (3D) In Vitro Cultures.
作者信息
Consales Claudia, Butera Alessio, Merla Caterina, Pasquali Emanuela, Lopresto Vanni, Pinto Rosanna, Pierdomenico Maria, Mancuso Mariateresa, Marino Carmela, Benassi Barbara
机构信息
Division of Health Protection Technologies, ENEA-Casaccia Italian National Agency for New Technologies, Energy and Sustainable Economic Development, Via Anguillarese 301, 00123, Rome, Italy.
Experimental Medicine and Surgery, University of Rome Tor Vergata, 00133, Rome, Italy.
出版信息
Mol Neurobiol. 2021 Apr;58(4):1634-1649. doi: 10.1007/s12035-020-02192-x. Epub 2020 Nov 24.
We here characterize the response to the extremely low-frequency (ELF) magnetic field (MF, 50 Hz, 1 mT) of SH-SY5Y human neuroblastoma cells, cultured in a three-dimensional (3D) Alvetex scaffold compared to conventional two-dimensional (2D) monolayers. We proved that the growing phenotype of proliferating SH-SY5Y cells is not affected by the culturing conditions, as morphology, cell cycle distribution, proliferation/differentiation gene expression of 3D-cultures overlap what reported in 2D plates. In response to 72-h exposure to 50-Hz MF, we demonstrated that no proliferation change and apoptosis activation occur in both 2D and 3D cultures. Consistently, no modulation of Ki67, MYCN, CCDN1, and Nestin, of invasiveness and neo-angiogenesis-controlling genes (HIF-1α, VEGF, and PDGF) and of microRNA epigenetic signature (miR-21-5p, miR-222-3p and miR-133b) is driven by ELF exposure. Conversely, intracellular glutathione content and SOD1 expression are exclusively impaired in 3D-culture cells in response to the MF, whereas no change of such redox modulators is observed in SH-SY5Y cells if grown on 2D monolayers. Moreover, ELF-MF synergizes with the differentiating agents to stimulate neuroblastoma differentiation into a dopaminergic (DA) phenotype in the 3D-scaffold culture only, as growth arrest and induction of p21, TH, DAT, and GAP43 are reported in ELF-exposed SH-SY5Y cells exclusively if grown on 3D scaffolds. As overall, our findings prove that 3D culture is a more reliable experimental model for studying SH-SY5Y response to ELF-MF if compared to 2D conventional monolayer, and put the bases for promoting 3D systems in future studies addressing the interaction between electromagnetic fields and biological systems.
我们在此描述了与传统二维(2D)单层培养相比,在三维(3D)Alvetex支架中培养的SH-SY5Y人神经母细胞瘤细胞对极低频(ELF)磁场(MF,50Hz,1mT)的反应。我们证明,增殖的SH-SY5Y细胞的生长表型不受培养条件的影响,因为3D培养物的形态、细胞周期分布、增殖/分化基因表达与2D平板中报道的情况重叠。在暴露于50Hz MF 72小时后,我们证明2D和3D培养物中均未发生增殖变化和凋亡激活。一致地,ELF暴露不会驱动Ki67、MYCN、CCDN1和巢蛋白、侵袭性和新血管生成控制基因(HIF-1α、VEGF和PDGF)以及微小RNA表观遗传特征(miR-21-5p、miR-222-3p和miR-133b)的调节。相反,细胞内谷胱甘肽含量和SOD1表达仅在3D培养细胞中因MF而受损,而在2D单层上生长的SH-SY5Y细胞中未观察到这些氧化还原调节剂的变化。此外,ELF-MF仅在3D支架培养中与分化剂协同作用,刺激神经母细胞瘤分化为多巴胺能(DA)表型,因为仅在3D支架上生长的ELF暴露的SH-SY5Y细胞中报告了生长停滞和p21、TH、DAT和GAP43的诱导。总体而言,我们的研究结果证明,与2D传统单层培养相比,3D培养是研究SH-SY5Y对ELF-MF反应的更可靠实验模型,并为在未来研究电磁场与生物系统之间的相互作用时推广3D系统奠定了基础。
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