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老年虚弱小鼠的心房结构、功能和心律失常发生机制。

Atrial structure, function and arrhythmogenesis in aged and frail mice.

机构信息

Department of Physiology and Biophysics, Faculty of Medicine, Dalhousie University, Halifax, Nova Scotia, Canada.

Division of Cardiology, Faculty of Medicine, Dalhousie University, Halifax, Nova Scotia, Canada.

出版信息

Sci Rep. 2017 Mar 14;7:44336. doi: 10.1038/srep44336.

Abstract

Atrial fibrillation (AF) is prevalent in aging populations; however not all individuals age at the same rate. Instead, individuals of the same chronological age can vary in health status from fit to frail. Our objective was to determine the impacts of age and frailty on atrial function and arrhythmogenesis in mice using a frailty index (FI). Aged mice were more frail and demonstrated longer lasting AF compared to young mice. Consistent with this, aged mice showed longer P wave duration and PR intervals; however, both parameters showed substantial variability suggesting differences in health status among mice of similar chronological age. In agreement with this, P wave duration and PR interval were highly correlated with FI score. High resolution optical mapping of the atria demonstrated reduced conduction velocity and action potential duration in aged hearts that were also graded by FI score. Furthermore, aged mice had increased interstitial fibrosis along with changes in regulators of extracellular matrix remodelling, which also correlated with frailty. These experiments demonstrate that aging results in changes in atrial structure and function that create a substrate for atrial arrhythmias. Importantly, these changes were heterogeneous due to differences in health status, which could be identified using an FI.

摘要

心房颤动(AF)在老龄化人群中很常见;然而,并非所有个体的衰老速度都相同。相反,相同年龄的个体在健康状况上可以从健康到虚弱不等。我们的目的是使用脆弱指数(FI)确定年龄和脆弱性对小鼠心房功能和心律失常发生的影响。与年轻小鼠相比,老年小鼠更脆弱,并且表现出持续时间更长的 AF。与此一致的是,老年小鼠的 P 波持续时间和 PR 间隔更长;然而,这两个参数都表现出很大的可变性,表明相同年龄的小鼠在健康状况上存在差异。与此一致的是,P 波持续时间和 PR 间隔与 FI 评分高度相关。心房的高分辨率光学映射显示,在 FI 评分评定的老年心脏中,传导速度和动作电位持续时间降低。此外,老年小鼠的间质纤维化增加,细胞外基质重塑调节剂发生变化,这也与脆弱性有关。这些实验表明,衰老导致心房结构和功能发生变化,为心房性心律失常创造了基质。重要的是,这些变化由于健康状况的差异而存在异质性,这可以使用 FI 来识别。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f63/5349540/d2c172d2be17/srep44336-f1.jpg

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