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在建模长 QT 型 3 综合征的 aged Scn5a+/DeltaKPQ 小鼠中,心房致心律失常性及其与钠离子通道表达和心脏传导的关系。

Atrial arrhythmogenicity in aged Scn5a+/DeltaKPQ mice modeling long QT type 3 syndrome and its relationship to Na+ channel expression and cardiac conduction.

机构信息

Physiological Laboratory, University of Cambridge, Downing Street, Cambridge, CB2 3EG, UK.

出版信息

Pflugers Arch. 2010 Aug;460(3):593-601. doi: 10.1007/s00424-010-0851-z. Epub 2010 Jun 16.

Abstract

Recent studies have reported that human mutations in Nav1.5 predispose to early age onset atrial arrhythmia. The present experiments accordingly assess atrial arrhythmogenicity in aging Scn5a+/KPQ mice modeling long QT3 syndrome in relationship to cardiac Na(+) channel, Nav1.5, expression. Atrial electrophysiological properties in isolated Langendorff-perfused hearts from 3- and 12-month-old wild type (WT), and Scn5a+/KPQ mice were assessed using programmed electrical stimulation and their Nav1.5 expression assessed by Western blot. Cardiac conduction properties were assessed electrocardiographically in intact anesthetized animals. Monophasic action potential recordings demonstrated increased atrial arrhythmogenicity specifically in aged Scn5a+/DeltaKPQ hearts. These showed greater action potential duration/refractory period ratios but lower atrial Nav1.5 expression levels than aged WT mice. Atrial Nav1.5 levels were higher in young Scn5a+/DeltaKPQ than young WT. These levels increased with age in WT but not Scn5a+/DeltaKPQ. Both young and aged Scn5a+/DeltaKPQ mice showed lower heart rates and longer PR intervals than their WT counterparts. Young Scn5a+/DeltaKPQ mice showed longer QT and QTc intervals than young WT. Aged Scn5a+/DeltaKPQ showed longer QRS durations than aged WT. PR intervals were prolonged and QT intervals were shortened in young relative to aged WT. In contrast, ECG parameters were similar between young and aged Scn5a+/DeltaKPQ. Aged murine Scn5a+/DeltaKPQ hearts thus exhibit an increased atrial arrhythmogenicity. The differing Nav1.5 expression and electrocardiographic indicators of slowed cardiac conduction between Scn5a+/DeltaKPQ and WT, which show further variations associated with aging, may contribute toward atrial arrhythmia in aged Scn5a+/DeltaKPQ hearts.

摘要

最近的研究报告称,人类 Nav1.5 突变易导致早发性心房心律失常。本实验因此评估了在建模长 QT3 综合征的 Scn5a+/KPQ 小鼠中,心脏 Na+通道、Nav1.5 表达与衰老相关的心房致心律失常性。通过程控电刺激和 Western blot 评估来自 3 个月和 12 个月龄野生型(WT)和 Scn5a+/KPQ 小鼠的离体 Langendorff 灌流心脏的心房电生理特性。在麻醉的完整动物中通过心电图评估心脏传导特性。单相动作电位记录显示,年龄较大的 Scn5a+/DeltaKPQ 心脏的心房致心律失常性明显增加。这些心脏的动作电位持续时间/不应期比值较大,但心房 Nav1.5 表达水平较低,与年龄较大的 WT 小鼠相比。年轻的 Scn5a+/DeltaKPQ 比年轻的 WT 心脏的心房 Nav1.5 水平更高。这些水平在 WT 中随年龄增加而增加,但在 Scn5a+/DeltaKPQ 中则不增加。年轻和年老的 Scn5a+/DeltaKPQ 小鼠的心率均低于 WT 对照,PR 间期也较长。年轻的 Scn5a+/DeltaKPQ 比年轻的 WT 小鼠的 QT 和 QTc 间期更长。年龄较大的 Scn5a+/DeltaKPQ 比年龄较大的 WT 小鼠的 QRS 持续时间更长。与年龄较大的 WT 相比,PR 间期延长,QT 间期缩短。相比之下,年轻和年龄较大的 Scn5a+/DeltaKPQ 之间的心电图参数相似。因此,衰老的 Scn5a+/DeltaKPQ 心脏表现出增加的心房致心律失常性。Scn5a+/DeltaKPQ 和 WT 之间的 Nav1.5 表达和心电图表现出缓慢的心脏传导的不同指标,并且随着年龄的增长还表现出进一步的变化,这些可能导致衰老的 Scn5a+/DeltaKPQ 心脏的心房心律失常。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aae6/2903684/8041892f02be/424_2010_851_Fig1_HTML.jpg

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