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内皮转录因子 ERG 在二叶式主动脉瓣或三叶式主动脉瓣的升主动脉瘤中具有不同作用:一项初步研究。

The Endothelial Transcription Factor ERG Mediates a Differential Role in the Aneurysmatic Ascending Aorta with Bicuspid or Tricuspid Aorta Valve: A Preliminary Study.

机构信息

Department of Cardiac Surgery, Tor Vergata University Polyclinic, 00133 Rome, Italy.

Pathological Anatomy, Department of Biomedicine and Prevention, Tor Vergata University, 00133 Rome, Italy.

出版信息

Int J Mol Sci. 2022 Sep 16;23(18):10848. doi: 10.3390/ijms231810848.

Abstract

The pathobiology of ascending aorta aneurysms (AAA) onset and progression is not well understood and only partially characterized. AAA are also complicated in case of bicuspid aorta valve (BAV) anatomy. There is emerging evidence about the crucial role of endothelium-related pathways, which show in AAA an altered expression and function. Here, we examined the involvement of ERG-related pathways in the differential progression of disease in aortic tissues from patients having a BAV or tricuspid aorta valve (TAV) with or without AAA. Our findings identified ERG as a novel endothelial-specific regulator of TGF-β-SMAD, Notch, and NO pathways, by modulating a differential fibrotic or calcified AAA progression in BAV and TAV aortas. We provided evidence that calcification is correlated to different ERG expression (as gene and protein), which appears to be under control of Notch signaling. The latter, when increased, associated with an early calcification in aortas with BAV valve and aneurysmatic, was demonstrated to favor the progression versus severe complications, i.e., dissection or rupture. In TAV aneurysmatic aortas, ERG appeared to modulate fibrosis. Therefore, we proposed that ERG may represent a sensitive tissue biomarker to monitor AAA progression and a target to develop therapeutic strategies and influence surgical procedures.

摘要

升主动脉瘤(AAA)发病和进展的病理生物学尚未得到很好的理解,目前仅部分特征得到了描述。主动脉瓣二叶畸形(BAV)的解剖结构使 AAA 更加复杂。越来越多的证据表明内皮相关途径在 AAA 中起着关键作用,这些途径表现出改变的表达和功能。在这里,我们研究了 ERG 相关途径在 BAV 或三尖瓣主动脉瓣(TAV)患者的主动脉组织中疾病的不同进展中的作用,这些患者有或没有 AAA。我们的研究结果表明,ERG 通过调节 BAV 和 TAV 主动脉中不同的纤维化或钙化 AAA 进展,是一种新的内皮特异性 TGF-β-SMAD、Notch 和 NO 途径调节剂。我们提供的证据表明,钙化与不同的 ERG 表达(作为基因和蛋白质)相关,而 ERG 似乎受 Notch 信号的控制。当后者增加时,与 BAV 瓣和动脉瘤性主动脉中的早期钙化相关,被证明有利于进展而不是严重并发症,即夹层或破裂。在 TAV 动脉瘤性主动脉中,ERG 似乎调节纤维化。因此,我们提出 ERG 可能是监测 AAA 进展的敏感组织生物标志物,也是开发治疗策略和影响手术程序的靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb2e/9502538/1a175699d853/ijms-23-10848-g001.jpg

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