Istituto di Scienze Applicate e Sistemi Intelligenti del CNR (ISASI-CNR), Naples, Italy.
Neuroscience. 2022 Feb 1;482:143-158. doi: 10.1016/j.neuroscience.2021.10.033. Epub 2021 Nov 23.
The electrophysiological properties of undifferentiated SH-SY5Y cells were examined during cultures prolonged even to 20 days by measuring the passive and active membrane properties at 5 days interval, as well as the spontaneous spiking activity. The results showed that culturing this cell for long time affected not only membrane shape but also their electrophysiological properties. In particular, these cells considerably varied their sodium and potassium voltage-dependent currents, various channels kinetic features and their excitable properties. These modifications would synergically contribute to the bioelectrical conversion of these cells and could be part of a more complex machinery with which the tumoral cell would regulate its survival advantage and resilience. Understanding these processes could add a new clue to the exploitation of this preclinical human neuronal model.
通过在 5 天的时间间隔内测量被动和主动膜特性,以及自发放电活动,研究了未分化的 SH-SY5Y 细胞在延长培养时间甚至达到 20 天的过程中的电生理特性。结果表明,长时间培养这种细胞不仅会影响细胞膜的形状,还会影响其电生理特性。特别是,这些细胞的钠和钾电压依赖性电流、各种通道动力学特征及其兴奋特性发生了显著变化。这些变化将协同促进这些细胞的生物电转换,并且可能是肿瘤细胞调节其生存优势和弹性的更复杂机制的一部分。了解这些过程可以为利用这种临床前人类神经元模型提供新的线索。