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在小鼠Scn5a+/-心脏的右心室流出道中,心律失常基质、传导减慢以及传导方向上的离散度增加。

Arrhythmic substrate, slowed propagation and increased dispersion in conduction direction in the right ventricular outflow tract of murine Scn5a+/- hearts.

作者信息

Zhang Y, Guzadhur L, Jeevaratnam K, Salvage S C, Matthews G D K, Lammers W J, Lei M, Huang C L-H, Fraser J A

机构信息

Physiological Laboratory, University of Cambridge, Cambridge, UK; Heart Centre, Northwest Women's and Children's Hospital, Xi'an, China.

出版信息

Acta Physiol (Oxf). 2014 Aug;211(4):559-73. doi: 10.1111/apha.12324. Epub 2014 Jul 9.

Abstract

AIM

To test a hypothesis attributing arrhythmia in Brugada Syndrome to right ventricular (RV) outflow tract (RVOT) conduction abnormalities arising from Nav 1.5 insufficiency and fibrotic change.

METHODS

Arrhythmic properties of Langendorff-perfused Scn5a+/- and wild-type mouse hearts were correlated with ventricular effective refractory periods (VERPs), multi-electrode array (MEA) measurements of action potential (AP) conduction velocities and dispersions in conduction direction (CD), Nav 1.5 expression levels, and fibrotic change, as measured at the RVOT and RV. Two-way anova was used to test for both independent and interacting effects of anatomical region and genotype on these parameters.

RESULTS

Scn5a+/- hearts showed greater arrhythmic frequencies during programmed electrical stimulation at the RVOT but not the RV. The Scn5a+/- genotype caused an independent increase of VERP regardless of whether the recording site was the RVOT or RV. Effective AP conduction velocities (CV†s), derived from fitting regression planes to arrays of observed local activation times were reduced in Scn5a+/- hearts and at the RVOT independently. AP conduction velocity magnitudes derived by averaging MEA results from local vector analyses, CV*, were reduced by the Scn5a+/- genotype alone. In contrast, dispersions in conduction direction, were greater in the RVOT than the RV, when the atrioventricular node was used as the pacing site. The observed reductions in Nav 1.5 expression were attributable to Scn5a+/-, whereas increased levels of fibrosis were associated with the RVOT.

CONCLUSIONS

The Scn5a+/- RVOT recapitulates clinical findings of increased arrhythmogenicity through reduced CV† reflecting reduced CV* attributable to reduced Nav 1.5 expression and increased CD attributable to fibrosis.

摘要

目的

验证一种假说,即Brugada综合征中的心律失常是由Nav 1.5功能不全和纤维化改变引起的右心室(RV)流出道(RVOT)传导异常所致。

方法

将Langendorff灌注的Scn5a+/-和野生型小鼠心脏的心律失常特性与心室有效不应期(VERP)、多电极阵列(MEA)测量的动作电位(AP)传导速度和传导方向离散度(CD)、Nav 1.5表达水平以及RVOT和RV处测量的纤维化改变相关联。采用双向方差分析来检验解剖区域和基因型对这些参数的独立和交互作用。

结果

Scn5a+/-心脏在RVOT而非RV进行程序性电刺激时显示出更高的心律失常频率。Scn5a+/-基因型导致VERP独立增加,无论记录部位是RVOT还是RV。通过将回归平面拟合到观察到的局部激活时间阵列得出的有效AP传导速度(CV†s)在Scn5a+/-心脏和RVOT处独立降低。通过对局部向量分析的MEA结果进行平均得出的AP传导速度大小CV*仅因Scn5a+/-基因型而降低。相反,当以房室结作为起搏部位时,RVOT的传导方向离散度大于RV。观察到的Nav 1.5表达降低归因于Scn5a+/-,而纤维化水平升高与RVOT相关。

结论

Scn5a+/- RVOT通过降低CV†概括了心律失常性增加的临床发现,CV†降低反映了CV*降低,这归因于Nav 1.5表达降低以及CD增加归因于纤维化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31d8/4296345/d51c6326142a/apha0211-0559-f1.jpg

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