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首页> 外文期刊>Neuro-degenerative diseases >Protective effects of bexarotene against amyloid-β25-35- induced dysfunction in hippocampal neurons through the insulin signaling pathway
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Protective effects of bexarotene against amyloid-β25-35- induced dysfunction in hippocampal neurons through the insulin signaling pathway

机译:贝沙罗汀通过胰岛素信号通路对海马神经元淀粉样β25-35诱导的功能障碍的保护作用

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Background: Bexarotene, a retinoid X receptor agonist, has been shown to reverse neurodegeneration in mouse models of Alzheimer's disease (AD), accompanied by a decreased level of amyloid-β (Aβ), which is a hallmark of AD. However, the mechanism underlying this therapeutic effect may involve enhancing the sensitivity to insulin. Objective: This study was to test the hypothesis that bexarotene would protect against Aβ25-35- induced dysfunction through the insulin signaling pathway. Methods: Using a whole-cell patch clamp technique, the excitability and voltage-gated potassium currents of hippocampal neurons were examined in four groups of cells (control, Aβ, Aβ + bexarotene and bexarotene). Results: It was found that insulin increased the excitability of neurons. Bexarotene could enhance this effect and reverse the Aβ25-35-induced decrease in the firing rate of the action potential (AP). In addition, the properties of the single AP (sAP) and voltage-gated outward K+ currents were recorded, which finally showed similar changes to those in the firing frequency. Conclusion: The effects of bexarotene on Aβ-impaired excitability and sAP duration were mainly associated with K+ channels through insulin signaling pathway, which may be an additional mechanism underlying the protective effect of bexarotene on AD.
机译:背景:类视黄醇X受体激动剂贝沙罗汀在阿尔茨海默氏病(AD)小鼠模型中可逆转神经退行性变,并伴有淀粉样β(Aβ)含量降低,这是AD的标志。但是,这种治疗作用的潜在机制可能涉及增强对胰岛素的敏感性。目的:本研究旨在验证贝沙罗汀通过胰岛素信号通路防止Aβ25-35诱导的功能障碍的假说。方法:采用全细胞膜片钳技术,在四组细胞(对照组,Aβ,Aβ+贝沙罗汀和贝沙罗汀)中检测海马神经元的兴奋性和电压门控钾电流。结果:发现胰岛素增加了神经元的兴奋性。贝沙罗汀可以增强这种作用,并逆转Aβ25-35引起的动作电位(AP)放电速率的降低。此外,记录了单个AP(sAP)和电压门控的向外K +电流的特性,最终显示出与发射频率类似的变化。结论:贝沙罗汀对Aβ受损的兴奋性和sAP持续时间的影响主要与通过胰岛素信号通路的K +通道有关,这可能是贝沙罗汀对AD保护作用的另一机制。

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