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首页> 外文期刊>Journal of cardiovascular electrophysiology >Localization of the sites of conduction abnormalities in a mouse model of myotonic dystrophy (see comments)
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Localization of the sites of conduction abnormalities in a mouse model of myotonic dystrophy (see comments)

机译:肌强直性营养不良的小鼠模型中传导异常部位的定位(请参阅评论)

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INTRODUCTION: A mouse strain lacking functional myotonic dystrophy protein kinase (DMPK) has recently been developed. DMPK-/- mice exhibit muscular and conduction abnormalities consistent with the disease; however, the site of abnormal cardiac conduction is unknown. METHODS AND RESULTS: Nine homozygous DMPK-/- mice and seven age matched wild-type (WT) controls underwent in vivo electrophysiologic studies using an endocardial 2-French catheter. Baseline intervals as well as Wenckebach and 2:1 cycle lengths were measured to assess AV and ventriculoatrial (VA) conduction. Effective refractory periods (ERP) and functional refractory periods were determined during atrial and ventricular premature stimulation. His-bundle recordings were obtained on all the studied animals (16/16). DMPK-/- mice had significantly prolonged PR (48.1 +/- 5.5 vs 40.9 +/- 3.9 msec, P = 0.010) and AH (36.7 +/- 4.0 vs 31.6 +/- 4.8 msec, P = 0.037) intervals compared to WT controls. HV intervals were very significantly prolonged as well (14.7 +/- 2.0 vs 10.3 +/- 0.8 msec; P < 0.0001). Three of 9 DMPK-/- and 1 of 7 WT mice exhibited VA block. Atrial ERP was reached before AV node ERP in 2 (22%) of 9 of the knockout mice and 5 (71%) of 7 of the controls (P = 0.06). Only one mouse (DMPK-/-) exhibited infra-Hisian block on premature atrial stimulation. CONCLUSION: In this mouse model of myotonic dystrophy, AV conduction abnormalities were localized to the supra-Hisian and infra-Hisian conduction tissues, with a higher predilection to the latter, a finding similar to the human form of the disease.
机译:引言:最近开发了一种小鼠功能性肌营养不良症蛋白激酶(DMPK)缺乏。 DMPK-/-小鼠表现出与疾病相符的肌肉和传导异常。但是,心脏传导异常的部位是未知的。方法和结果:9只纯合DMPK-/-小鼠和7只年龄匹配的野生型(WT)对照品使用心内膜2导管法进行了体内电生理研究。测量基线间隔以及Wenckebach和2:1周期长度,以评估AV和心室(VA)传导。在心房和室性早搏期间确定有效不应期(ERP)和功能不应期。在所有研究的动物上都获得了他的束记录(16/16)。 DMPK-/-小鼠的PR(48.1 +/- 5.5 vs 40.9 +/- 3.9毫秒,P = 0.010)和AH(36.7 +/- 4.0 vs 31.6 +/- 4.8毫秒,P = 0.037)的间隔明显延长WT控件。 HV间隔也显着延长(14.7 +/- 2.0对10.3 +/- 0.8毫秒; P <0.0001)。 9只DMPK-/-中的3只和7只WT小鼠中的1只显示VA阻滞。在9只基因敲除小鼠中的2个(22%)和7个对照小鼠中的5个(71%)的AV节点ERP之前达到了心房ERP(P = 0.06)。只有一只小鼠(DMPK-/-)在过早的心房刺激上表现出海西区阻滞。结论:在这种强直性肌营养不良的小鼠模型中,房室传导异常位于上Hisian和Hishi-Hisian传导组织中,后者的患病率较高,这一发现与该疾病的人类形式相似。

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