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心房颤动时电活动的频率和不规则性通过不同的信号通路影响心肌 NGF 表达。

Rate and irregularity of electrical activation during atrial fibrillation affect myocardial NGF expression via different signalling routes.

机构信息

Department of Cardiology, University RWTH Aachen, Aachen, Germany.

出版信息

Cell Signal. 2012 Jan;24(1):99-105. doi: 10.1016/j.cellsig.2011.08.007. Epub 2011 Aug 26.

DOI:10.1016/j.cellsig.2011.08.007
PMID:21889978
Abstract

An irregular ventricular response during atrial fibrillation (AF) has been shown to mediate an increase in sympathetic nerve activity in human subjects. The molecular mechanisms remain unclear. This study aimed to investigate the impact of rate and irregularity on nerve growth factor (NGF) expression in cardiomyocytes, since NGF is known to be the main contributor to cardiac sympathetic innervation density. Cell cultures of neonatal rat ventricular myocytes were electrically stimulated for 48 h with increasing rates (0, 5 and 50 Hz) and irregularity (standard deviation (SD)=5%, 25% and 50% of mean cycle length). Furthermore, we analyzed the calcineurin-NFAT and the endothelin-1 signalling pathways as possible contributors to NGF regulation during arrhythmic stimulation. We found that the increase of NGF expression reached its maximum at the irregularity of 25% SD by 5 Hz (NGF: 5 Hz 0% SD=1 vs. 5Hz 25% SD=1.57, P<0.05). Specific blockade of the ET-A receptor by BQ123 could abolish this NGF increase (NGF: 5 Hz 25% SD+BQ123=0.66, P<0.05). High frequency electrical field stimulation (HFES) with 50 Hz decreased the NGF expression in a significant manner (NGF: 50Hz=0.55, P<0.05). Inhibition of calcineurin-NFAT signalling with cyclosporine-A or 11R-VIVIT abolished the HFES induced NGF down-regulation (NGF: 50 Hz+CsA=1.14, P<0.05). In summary, this study reveals different signalling routes of NGF expression in cardiomyocytes exposed to increasing rates and irregularity. Whether this translates into different degrees of NGF expression and possibly neural sympathetic growth in various forms of ventricular rate control during AF remains to be elucidated in further studies.

摘要

心房颤动(AF)期间的不规则心室反应已被证明可增加人体交感神经活动。其分子机制尚不清楚。本研究旨在探讨在心肌细胞中,频率和不规则性对神经生长因子(NGF)表达的影响,因为已知 NGF 是心脏交感神经支配密度的主要贡献者。对新生大鼠心室肌细胞进行了 48 小时的电刺激,刺激频率逐渐增加(0、5 和 50 Hz),不规则性逐渐增加(标准偏差(SD)=平均心动周期长度的 5%、25%和 50%)。此外,我们分析了钙调神经磷酸酶-NFAT 和内皮素-1 信号通路,作为心律失常刺激时 NGF 调节的可能贡献者。我们发现,在 5 Hz 时不规则度为 25% SD 时,NGF 表达增加达到最大值(NGF:5 Hz 0% SD=1 比 5 Hz 25% SD=1.57,P<0.05)。内皮素 A 受体的特异性阻断剂 BQ123 可消除这种 NGF 增加(NGF:5 Hz 25% SD+BQ123=0.66,P<0.05)。以 50 Hz 的高频电场刺激(HFES)可显著降低 NGF 的表达(NGF:50 Hz=0.55,P<0.05)。钙调神经磷酸酶-NFAT 信号通路的抑制作用用环孢素 A 或 11R-VIVIT 消除了 HFES 诱导的 NGF 下调(NGF:50 Hz+CsA=1.14,P<0.05)。总之,本研究揭示了心肌细胞在受到频率增加和不规则性刺激时 NGF 表达的不同信号通路。在 AF 期间各种形式的心室率控制中,这是否转化为不同程度的 NGF 表达和可能的神经交感生长,仍有待进一步研究阐明。

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