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血管内皮生长因子-B 过表达心肌对心律失常和交感神经生长的易感性。

Susceptibility to Cardiac Arrhythmias and Sympathetic Nerve Growth in VEGF-B Overexpressing Myocardium.

机构信息

A.I. Virtanen Institute for Molecular Sciences, University of Eastern Finland, Yliopistonranta 1E, 70211 Kuopio, Finland.

Heart Center, Kuopio University Hospital, Puijonlaaksontie 2, 70210 Kuopio, Finland.

出版信息

Mol Ther. 2020 Jul 8;28(7):1731-1740. doi: 10.1016/j.ymthe.2020.03.011. Epub 2020 Mar 19.

Abstract

VEGF-B gene therapy is a promising proangiogenic treatment for ischemic heart disease, but, unexpectedly, we found that high doses of VEGF-B promote ventricular arrhythmias (VAs). VEGF-B knockout, alpha myosin heavy-chain promoter (αMHC)-VEGF-B transgenic mice, and pigs transduced intramyocardially with adenoviral (Ad)VEGF- B186 were studied. Immunostaining showed a 2-fold increase in the number of nerves per field (76 vs. 39 in controls, p < 0.001) and an abnormal nerve distribution in the hypertrophic hearts of 11- to 20-month-old αMHC-VEGF-B mice. AdVEGF-B186 gene transfer (GT) led to local sprouting of nerve endings in pig myocardium (141 vs. 78 nerves per field in controls, p < 0.05). During dobutamine stress, 60% of the αMHC-VEGF-B hypertrophic mice had arrhythmias as compared to 7% in controls, and 20% of the AdVEGF-B186-transduced pigs and 100% of the combination of AdVEGF-B186- and AdsVEGFR-1-transduced pigs displayed VAs and even ventricular fibrillation. AdVEGF-B186 GT significantly increased the risk of sudden cardiac death in pigs when compared to any other GT with different VEGFs (hazard ratio, 500.5; 95% confidence interval [CI] 46.4-5,396.7; p < 0.0001). In gene expression analysis, VEGF-B induced the upregulation of Nr4a2, ATF6, and MANF in cardiomyocytes, molecules previously linked to nerve growth and differentiation. Thus, high AdVEGF-B186 overexpression induced nerve growth in the adult heart via a VEGFR-1 signaling-independent mechanism, leading to an increased risk of VA and sudden cardiac death.

摘要

VEGF-B 基因治疗是一种有前途的促血管生成治疗缺血性心脏病的方法,但出乎意料的是,我们发现高剂量的 VEGF-B 可促进室性心律失常(VA)。我们研究了 VEGF-B 基因敲除、α肌球蛋白重链启动子(αMHC)-VEGF-B 转基因小鼠和心肌内转导腺病毒(Ad)VEGF-B186 的猪。免疫组化显示,每个视野的神经数量增加了 2 倍(分别为 76 和对照组的 39,p < 0.001),并且在 11-20 个月大的αMHC-VEGF-B 小鼠的肥厚心脏中存在异常的神经分布。AdVEGF-B186 基因转移(GT)导致猪心肌中神经末梢的局部发芽(与对照组相比,分别为 141 和 78 个神经/视野,p < 0.05)。在多巴酚丁胺应激期间,与对照组的 7%相比,60%的αMHC-VEGF-B 肥厚小鼠发生心律失常,而 20%的 AdVEGF-B186 转导猪和 100%的 AdVEGF-B186 和 AdsVEGFR-1 联合转导猪则发生 VA,甚至心室颤动。与其他转导不同 VEGFs 的 GT 相比,AdVEGF-B186 GT 显著增加了猪发生心脏性猝死的风险(风险比,500.5;95%置信区间[CI],46.4-5,396.7;p < 0.0001)。在基因表达分析中,VEGF-B 诱导心肌细胞中 Nr4a2、ATF6 和 MANF 的上调,这些分子先前与神经生长和分化有关。因此,高表达 AdVEGF-B186 通过一种 VEGFR-1 信号非依赖机制诱导成年心脏中的神经生长,从而增加 VA 和心脏性猝死的风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5b6/7335717/db82682e9a71/fx1.jpg

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