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<em>Ex Vivo</em> Calcium Imaging for <em>Drosophila</em> Model of Epilepsy

癫痫 黑腹果蝇 钙显像 神经科学 基因敲除 离体 生物 体内 细胞生物学 医学 遗传学 基因 内科学
作者
Ming‐Feng He,Chu-Qiao Liu,Xi-Xing Zhang,Yong-Miao Lin,Yuling Mao,Jing‐Da Qiao
出处
期刊:Journal of Visualized Experiments [MyJoVE Corporation]
卷期号: (200)
标识
DOI:10.3791/65825
摘要

Epilepsy is a neurological disorder characterized by recurrent seizures, partially correlated with genetic origin, affecting over 70 million individuals worldwide. Despite the clinical importance of epilepsy, the functional analysis of neural activity in the central nervous system is still to be developed. Recent advancements in imaging technology, in combination with stable expression of genetically encoded calcium indicators, such as GCaMP6, have revolutionized the study of epilepsy at both brain-wide and single-cell resolution levels. Drosophila melanogaster has emerged as a tool for investigating the molecular and cellular mechanisms underlying epilepsy due to its sophisticated molecular genetics and behavioral assays. In this study, we present a novel and efficient protocol for ex vivo calcium imaging in GCaMP6-expressing adult Drosophila to monitor epileptiform activities. The whole brain is prepared from cac, a well-known epilepsy gene, knockdown flies for calcium imaging with a confocal microscope to identify the neural activity as a follow-up to the bang-sensitive seizure-like behavior assay. The cac knockdown flies showed a higher rate of seizure-like behavior and abnormal calcium activities, including more large spikes and fewer small spikes than wild-type flies. The calcium activities were correlated to seizure-like behavior. This methodology serves as an efficient methodology in screening the pathogenic genes for epilepsy and exploring the potential mechanism of epilepsy at the cellular level.

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