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HCN通道阻滞剂对斑马鱼睡眠/觉醒行为的筛选作用

Screening effects of HCN channel blockers on sleep/wake behavior in zebrafish.

作者信息

Doldur-Balli Fusun, Smieszek Sandra P, Keenan Brendan T, Zimmerman Amber J, Veatch Olivia J, Polymeropoulos Christos M, Birznieks Gunther, Polymeropoulos Mihael H

机构信息

Division of Sleep Medicine, Department of Medicine, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA, United States.

Vanda Pharmaceuticals Inc., Pennsylvania, Washington, DC, United States.

出版信息

Front Neurosci. 2024 Mar 19;18:1375484. doi: 10.3389/fnins.2024.1375484. eCollection 2024.

Abstract

Hyperpolarization-activated cyclic nucleotide-gated (HCN) ion channels generate electrical rhythmicity in various tissues although primarily heart, retina and brain. The HCN channel blocker compound, Ivabradine (Corlanor), is approved by the US Food and Drug Administration (FDA) as a medication to lower heart rate by blocking hyperpolarization activated inward current in the sinoatrial node. In addition, a growing body of evidence suggests a role for HCN channels in regulation of sleep/wake behavior. Zebrafish larvae are ideal model organisms for high throughput drug screening, drug repurposing and behavioral phenotyping studies. We leveraged this model system to investigate effects of three HCN channel blockers (Ivabradine, Zatebradine Hydrochloride and ZD7288) at multiple doses on sleep/wake behavior in wild type zebrafish. Results of interest included shorter latency to daytime sleep at 0.1 μM dose of Ivabradine (ANOVA, p: 0.02), moderate reduction in average activity at 30 μM dose of Zatebradine Hydrochloride (ANOVA, p: 0.024) in daytime, and increased nighttime sleep at 4.5 μM dose of ZD7288 (ANOVA, p: 0.036). Taken together, shorter latency to daytime sleep, decrease in daytime activity and increased nighttime sleep indicate that different HCN channel antagonists affected different parameters of sleep and activity.

摘要

超极化激活的环核苷酸门控(HCN)离子通道在各种组织中产生电节律,尽管主要是在心脏、视网膜和大脑中。HCN通道阻滞剂伊伐布雷定(可兰特)已被美国食品药品监督管理局(FDA)批准为一种药物,通过阻断窦房结中的超极化激活内向电流来降低心率。此外,越来越多的证据表明HCN通道在调节睡眠/觉醒行为中发挥作用。斑马鱼幼体是用于高通量药物筛选、药物再利用和行为表型研究的理想模式生物。我们利用这个模型系统来研究三种HCN通道阻滞剂(伊伐布雷定、盐酸扎替雷定和ZD7288)在多个剂量下对野生型斑马鱼睡眠/觉醒行为的影响。有趣的结果包括:伊伐布雷定0.1 μM剂量时白天睡眠潜伏期缩短(方差分析,p:0.02);盐酸扎替雷定30 μM剂量时白天平均活动适度降低(方差分析,p:0.024);ZD7288 4.5 μM剂量时夜间睡眠增加(方差分析,p:0.036)。综上所述,白天睡眠潜伏期缩短、白天活动减少和夜间睡眠增加表明不同的HCN通道拮抗剂影响了睡眠和活动的不同参数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/995f/10986788/4c3d391d4202/fnins-18-1375484-g001.jpg

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