Real-Time Monitoring of Levetiracetam Effect on the Electrophysiology of an Heterogenous Human iPSC-Derived Neuronal Cell Culture Using Microelectrode Array Technology

被引:8
|
作者
Di Credico, Andrea [1 ]
Gaggi, Giulia [2 ]
Izzicupo, Pascal [1 ]
Ferri, Laura [3 ]
Bonanni, Laura [1 ]
Iannetti, Giovanni [4 ]
Di Baldassarre, Angela [1 ]
Ghinassi, Barbara [1 ]
机构
[1] G D Annunzio Univ Chieti Pescara, Dept Med & Aging Sci, I-66100 Chieti, Italy
[2] Harvard Med Sch, Harvard Med Sch Initiat RNA Med, Beth Israel Deaconess Med Ctr, Boston, MA 02115 USA
[3] G D Annunzio Univ Chieti Pescara, Dept Neurosci Imaging & Clin Sci, I-66100 Chieti, Italy
[4] Univ Rome Sapienza, Fac Med & Dent, I-00185 Rome, Italy
来源
BIOSENSORS-BASEL | 2021年 / 11卷 / 11期
关键词
microelectrode array; biosensors; real-time monitoring; iPSC-derived neurons; drug screening; Levetiracetam; electrophysiology; NETWORKS; WAVE;
D O I
10.3390/bios11110450
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Levetiracetam (LEV) is a broad-spectrum and widely used antiepileptic drug that also has neuroprotective effects in different neurological conditions. Given its complex interaction with neuronal physiology, a better comprehension of LEV effects on neurons activity is needed. Microelectrode arrays (MEAs) represent an advanced technology for the non-invasive study of electrophysiological activity of neuronal cell cultures. In this study, we exploited the Maestro Edge MEA system, a platform that allows a deep analysis of the electrical network behavior, to study the electrophysiological effect of LEV on a mixed population of human neurons (glutamatergic, GABAergic and dopaminergic neurons, and astrocytes). We found that LEV significantly affected different variables such as spiking, single-electrode bursting, and network bursting activity, with a pronounced effect after 15 min. Moreover, neuronal cell culture completely rescued its baseline activity after 24 h without LEV. In summary, MEA technology confirmed its high sensitivity in detecting drug-induced electrophysiological modifications. Moreover, our results allow one to extend the knowledge on the electrophysiological effects of LEV on the complex neuronal population that resembles the human cortex.
引用
收藏
页数:13
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