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装载Fluo-4 AM酯的脑片中的快速神经元钙信号

Fast Neuronal Calcium Signals in Brain Slices Loaded With Fluo-4 AM Ester.

作者信息

İpek Ömer Yusuf, Abbas Fatima, Sajidy Hajar, Canepari Marco

机构信息

Université Grenoble Alpes, CNRS, LIPhy, Grenoble, France.

Institute of Health Sciences/Physiology, Erciyes University, Kayseri, Turkey.

出版信息

Eur J Neurosci. 2025 Jan;61(1):e16657. doi: 10.1111/ejn.16657.

Abstract

Staining brain slices with acetoxymethyl ester (AM) Ca dyes is a straightforward procedure to load multiple cells, and Fluo-4 is a commonly used high-affinity indicator due to its very large dynamic range. It has been shown that this dye preferentially stains glial cells, providing slow and large Ca transients, but it is questionable whether and at which temporal resolution it can also report Ca transients from neuronal cells. Here, by electrically stimulating mouse hippocampal slices, we resolved fast neuronal signals corresponding to 1%-3% maximal fluorescence changes. Specifically, by recording Ca fluorescence at 2000 frames/s from multiple sites both in the CA3 and in the CA1 regions, we observed that the signal measured near the stimulating electrode, positioned on the mossy fibre pathway, was not blocked by perfusion with 10 μM NBQX and 50 μM AP5, preventing excitatory synaptic transmission. In contrast, this signal was fully blocked by additional perfusion with 1 μM tetrodotoxin, inhibiting voltage-gated Na channels and neuronal action potentials. We also present recordings obtained in the presence of 10 μM of the GABA receptor antagonist bicuculline, or of 50 μM of the voltage-gated K channel inhibitor 4-aminopyridine, exhibiting a wide propagation of the signal from CA3 to CA1 regions under conditions that mimic epileptic seizures. Altogether, while Fluo-4 AM remains a preferable indicator for reporting Ca signals from astrocytes at slow temporal resolution, we demonstrated that it can be also utilised for analysing fast neuronal network activity elicited by electrical stimulation in brain slices.

摘要

用乙酰氧基甲酯(AM)钙染料对脑片进行染色是一种加载多个细胞的直接方法,而Fluo-4由于其非常大的动态范围,是一种常用的高亲和力指示剂。已经表明,这种染料优先染色神经胶质细胞,产生缓慢且大的钙瞬变,但它是否能够以及以何种时间分辨率报告神经元细胞的钙瞬变仍存在疑问。在这里,通过电刺激小鼠海马脑片,我们解析了对应于最大荧光变化1%-3%的快速神经元信号。具体而言,通过在CA3和CA1区域的多个位点以2000帧/秒的速度记录钙荧光,我们观察到位于苔藓纤维通路的刺激电极附近测量的信号,不会被用10μM NBQX和50μM AP5灌注所阻断,后者可防止兴奋性突触传递。相反,通过额外用1μM河豚毒素灌注,抑制电压门控钠通道和神经元动作电位,该信号被完全阻断。我们还展示了在存在10μM GABA受体拮抗剂荷包牡丹碱或50μM电压门控钾通道抑制剂4-氨基吡啶的情况下获得的记录,这些记录显示在模拟癫痫发作的条件下,信号从CA3区域到CA1区域有广泛的传播。总之,虽然Fluo-4 AM仍然是在慢时间分辨率下报告星形胶质细胞钙信号的首选指示剂,但我们证明它也可用于分析脑片中电刺激引发的快速神经元网络活动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44cb/11727817/a890572cc1d7/EJN-61-0-g002.jpg

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