首页> 外文期刊>BioMed research international >Rongfa Chen, Tao Zhang, Liting Kuang, Zhen Chen, Dongzhi Ran, Yang Niu, Kangqing Xu, Huaiyu Gu
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Rongfa Chen, Tao Zhang, Liting Kuang, Zhen Chen, Dongzhi Ran, Yang Niu, Kangqing Xu, Huaiyu Gu

机译:Ron广发Chen, tao Zhang, l I蜓Ku昂, Z很C很, dong中Iran, yang NI U, K按G情X U, hu碍于GU

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Purpose. Sevoflurane, one of the most used general anesthetics, is widely used in clinical practice all over the world. Previous studies indicated that sevoflurane could induce neuron apoptosis and neural deficit causing query in the safety of anesthesia using sevoflurane. The present study was designed to investigate the effects of sevoflurane on electrophysiology in Drosophila pupa whose excitatory neurotransmitter is acetylcholine early after sevoflurane exposure using whole brain recording technique. Methods. Wide types of Drosophila (canton-s flies) were allocated to control and sevoflurane groups randomly. Sevoflurane groups (1% sevoflurane; 2% sevoflurane; 3% sevoflurane) were exposed to sevoflurane and the exposure lasted 5 hours, respectively. All flies were subjected to electrophysiology experiment using patch clamp 24 hours after exposure. Results. The results showed that, 24 hours after sevoflurane exposure, frequency but not the amplitude of miniature excitatory postsynaptic currents (mEPSCs) was significantly reduced (P < 0.05). Furthermore, we explored the underlying mechanism and found that calcium currents density, which partially regulated the frequency of mEPSCs, was significantly reduced after sevoflurane exposure (P < 0.05). Conclusions. All these suggested that sevoflurane could alter the mEPSCs that are related to synaptic plasticity partially through modulating calcium channel early after sevoflurane exposure.
机译:目的。七氟烷是最常用的一般麻醉剂之一,广泛用于世界各地的临床实践中。以前的研究表明,七氟醚可以诱导神经元凋亡和神经缺陷,导致使用七氟醚在麻醉安全性中的查询。本研究旨在探讨七氟醚对果蝇蛹中的电生理学的影响,其兴奋性神经递质是使用全脑记录技术在七氟脲暴露后早期乙酰胆碱的影响。方法。随机分配宽类型的果蝇(州苍蝇)以随机控制和七氟醚基团。七氟醚基团(1%七氟醚; 2%七氟醚; 3%七氟醚)暴露于七氟醚,曝光分别持续5小时。曝光后24小时使用膜片夹,所有苍蝇都经受电生理学实验。结果。结果表明,七氟醚暴露后24小时,频率但不是微型兴奋性突触突触电流(MEPSCs)的幅度显着降低(P <0.05)。此外,我们探讨了潜在的机制,发现七氟醚暴露后,部分调节MEPSCs频率的钙电流密度显着降低(P <0.05)。结论。所有这些都表明七氟醚可以改变七氟烷暴露后早期通过调节钙通道的突触塑性有关的MEPSC。

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