European Laboratory for Non-Linear Spectroscopy (LENS), Sesto Fiorentino, Italy.
Department of Biology, University of Florence, Sesto Fiorentino, Italy.
Sci Rep. 2017 Jun 8;7(1):3025. doi: 10.1038/s41598-017-03087-z.
Mapping neuronal activity during the onset and propagation of epileptic seizures can provide a better understanding of the mechanisms underlying this pathology and improve our approaches to the development of new drugs. Recently, zebrafish has become an important model for studying epilepsy both in basic research and in drug discovery. Here, we employed a transgenic line with pan-neuronal expression of the genetically-encoded calcium indicator GCaMP6s to measure neuronal activity in zebrafish larvae during seizures induced by pentylenetretrazole (PTZ). With this approach, we mapped neuronal activity in different areas of the larval brain, demonstrating the high sensitivity of this method to different levels of alteration, as induced by increasing PTZ concentrations, and the rescuing effect of an anti-epileptic drug. We also present simultaneous measurements of brain and locomotor activity, as well as a high-throughput assay, demonstrating that GCaMP measurements can complement behavioural assays for the detection of subclinical epileptic seizures, thus enabling future investigations on human hypomorphic mutations and more effective drug screening methods. Notably, the methodology described here can be easily applied to the study of many human neuropathologies modelled in zebrafish, allowing a simple and yet detailed investigation of brain activity alterations associated with the pathological phenotype.
在癫痫发作的起始和传播过程中对神经元活动进行映射可以更好地理解该病理学的潜在机制,并改进我们开发新药的方法。最近,斑马鱼已成为研究癫痫的一个重要模型,无论是在基础研究还是在药物发现中。在这里,我们使用了一种具有神经元泛表达的转基因系,该系表达的是遗传编码的钙指示剂 GCaMP6s,以测量戊四氮(PTZ)诱导的癫痫发作期间斑马鱼幼虫的神经元活动。通过这种方法,我们在幼虫大脑的不同区域中映射了神经元活动,证明了该方法对不同程度改变的高度敏感性,这种改变是由增加的 PTZ 浓度引起的,以及抗癫痫药物的挽救作用。我们还同时进行了脑和运动活动的测量,以及高通量检测,表明 GCaMP 测量可以补充行为检测以检测亚临床癫痫发作,从而能够对人类低功能突变进行未来研究,并开发更有效的药物筛选方法。值得注意的是,这里描述的方法可轻松应用于在斑马鱼中建模的许多人类神经病理学的研究,从而可以简单而详细地研究与病理表型相关的脑活动改变。