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IEEE Transactions on Biomedical Engineering 2018-Sep

Epilepsy-on-a-chip System for Antiepileptic Drug Discovery.

Ní féidir ach le húsáideoirí cláraithe ailt a aistriú
Logáil Isteach / Cláraigh
Sábháiltear an nasc chuig an gearrthaisce
Jing Liu
Anna R Sternberg
Shabnam Ghiasvand
Yevgeny Berdichevsky

Keywords

Coimriú

OBJECTIVE

Hippocampal slice cultures spontaneously develop chronic epilepsy several days after slicing and are used as an in vitro model of post-traumatic epilepsy. Here, we describe a hybrid microfluidic-microelectrode array (μflow-MEA) technology that incorporates microfluidic perfusion network and electrodes into a miniaturized device for hippocampal slice culture based antiepileptic drug discovery.

METHODS

Field potential simulation was conducted to help optimize the electrode design to detect seizure-like population activity. Epilepsy-on-a-chip model was validated by chronic electrical recording, neuronal survival quantification, and anticonvulsant test. To demonstrate the application of μflow-MEA in drug discovery, we utilized a two-stage screening platform to identify potential targets for antiepileptic drugs. In Stage I, lactate and lactate dehydrogenase biomarker assays were performed to identify potential drug candidates. In Stage II, candidate compounds were retested with μflow-MEA based chronic electrical assay to provide electrophysiological confirmation of biomarker results.

CONCLUSIONS

We screened 12 receptor tyrosine kinases inhibitors, and EGFR/ErbB-2 inhibitor and cFMS inhibitor were identified as novel antiepileptic compounds.

CONCLUSIONS

This epilepsy-on-a-chip system provides the means for rapid dissection of complex signaling pathways in epileptogenesis, paving the way for high-throughput antiepileptic drug discovery.

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