衰老自发性高血压大鼠的心房心律失常:揭示高血压和衰老中的基质。
Atrial arrhythmia in ageing spontaneously hypertensive rats: unraveling the substrate in hypertension and ageing.
机构信息
Centre for Heart Rhythm Disorders (CHRD), University of Adelaide and Royal Adelaide Hospital, Adelaide, Australia.
出版信息
PLoS One. 2013 Aug 27;8(8):e72416. doi: 10.1371/journal.pone.0072416. eCollection 2013.
BACKGROUND
Both ageing and hypertension are known risk factors for atrial fibrillation (AF) although the pathophysiological contribution or interaction of the individual factors remains poorly understood. Here we aim to delineate the arrhythmogenic atrial substrate in mature spontaneously hypertensive rats (SHR).
METHODS
SHR were studied at 12 and 15 months of age (n = 8 per group) together with equal numbers of age-matched normotensive Wistar-Kyoto control rats (WKY). Electrophysiologic study was performed on superfused isolated right and left atrial preparations using a custom built high-density multiple-electrode array to determine effective refractory periods (ERP), atrial conduction and atrial arrhythmia inducibility. Tissue specimens were harvested for structural analysis.
RESULTS
COMPARED TO WKY CONTROLS, THE SHR DEMONSTRATED: Higher systolic blood pressure (p<0.0001), bi-atrial enlargement (p<0.05), bi-ventricular hypertrophy (p<0.05), lower atrial ERP (p = 0.008), increased atrial conduction heterogeneity (p = 0.001) and increased atrial interstitial fibrosis (p = 0.006) & CD68-positive macrophages infiltration (p<0.0001). These changes resulted in higher atrial arrhythmia inducibility (p = 0.01) and longer induced AF episodes (p = 0.02) in 15-month old SHR. Ageing contributed to incremental bi-atrial hypertrophy (p<0.01) and atrial conduction heterogeneity (p<0.01) without affecting atrial ERP, fibrosis and arrhythmia inducibility. The limited effect of ageing on the atrial substrate may be secondary to the reduction in CD68-positive macrophages.
CONCLUSIONS
Significant atrial electrical and structural remodeling is evident in the ageing spontaneously hypertensive rat atria. Concomitant hypertension appears to play a greater pathophysiological role than ageing despite their compounding effect on the atrial substrate. Inflammation is pathophysiologically linked to the pro-fibrotic changes in the hypertensive atria.
背景
衰老和高血压都是心房颤动(AF)的已知危险因素,尽管个体因素的病理生理贡献或相互作用仍知之甚少。在这里,我们旨在描绘成熟自发性高血压大鼠(SHR)的致心律失常性心房基质。
方法
在 12 个月和 15 个月龄时(每组 8 只)研究 SHR,并与年龄匹配的正常血压 Wistar-Kyoto 对照大鼠(WKY)进行比较。使用定制的高密度多电极阵列对超流分离的右心房和左心房标本进行电生理研究,以确定有效不应期(ERP)、心房传导和心房心律失常诱导性。采集组织标本进行结构分析。
结果
与 WKY 对照组相比,SHR 表现为:更高的收缩压(p<0.0001)、双心房增大(p<0.05)、双心室肥厚(p<0.05)、较低的心房 ERP(p=0.008)、心房传导异质性增加(p=0.001)和心房间质纤维化增加(p=0.006)和 CD68 阳性巨噬细胞浸润(p<0.0001)。这些变化导致 15 个月大的 SHR 心房心律失常诱导性更高(p=0.01)和诱导 AF 发作时间更长(p=0.02)。衰老导致双心房进一步肥大(p<0.01)和心房传导异质性增加(p<0.01),而不影响心房 ERP、纤维化和心律失常诱导性。衰老对心房基质的影响有限可能是由于 CD68 阳性巨噬细胞减少所致。
结论
衰老的自发性高血压大鼠心房明显存在电和结构重构。尽管高血压与衰老对心房基质的复合作用,但高血压似乎比衰老具有更大的病理生理作用。炎症与高血压心房的促纤维化变化在病理生理上有关。
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