动脉病变的扩展遗传结构:从典型TAAD基因到新兴结缔组织和信号通路。

IF 4.4 Q1 Medicine
Luke Dreher, Hussein Abdul Nabi, Hunter Vandolah, Stephen Brennan, George Bcharah, Hend Bcharah, Mayowa A Osundiji, Linnea M Baudhuin, Fadi E Shamoun
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引用次数: 0

摘要

胸主动脉瘤和夹层(TAAD)包括一组临床异质性疾病,其特点是高发病率和死亡率。过去二十年的遗传研究极大地扩展了我们对遗传性TAAD分子景观的理解,揭示了多种相互关联的生物途径的贡献。本文系统总结了超过75个与TAAD发病机制相关的基因,并根据其主要机制作用进行了分类,包括TGF-β信号转导、细胞外基质重塑、平滑肌细胞收缩性和细胞骨架调节、细胞-基质和细胞-细胞粘附、代谢过程、离子转运和转录调控。特别强调的是具有可变或重叠临床表型的新兴基因,双机制候选基因,以及它们对个性化临床管理的影响,包括监测和手术干预阈值。将分子见解整合到临床实践中,同时谨慎考虑不确定意义的基因,有望提高遗传主动脉疾病患者的诊断精度和风险分层。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The Expanding Genetic Architecture of Arteriopathies: From Canonical TAAD Genes to Emerging Connective Tissue and Signaling Pathways.

The Expanding Genetic Architecture of Arteriopathies: From Canonical TAAD Genes to Emerging Connective Tissue and Signaling Pathways.

The Expanding Genetic Architecture of Arteriopathies: From Canonical TAAD Genes to Emerging Connective Tissue and Signaling Pathways.

The Expanding Genetic Architecture of Arteriopathies: From Canonical TAAD Genes to Emerging Connective Tissue and Signaling Pathways.

Thoracic aortic aneurysm and dissection (TAAD) encompasses a clinically heterogeneous group of diseases characterized by high morbidity and mortality. Genetic studies over the past two decades have significantly expanded our understanding of the molecular landscape underlying heritable TAAD, revealing contributions from multiple interconnected biological pathways. This review systematically summarizes more than 75 genes implicated in TAAD pathogenesis, categorizing them according to major mechanistic roles including TGF-β signaling, extracellular matrix remodeling, smooth muscle cell contractility and cytoskeletal regulation, cell-matrix and cell-cell adhesion, metabolic processes, ion transport, and transcriptional regulation. Special emphasis is placed on emerging genes with variable or overlapping clinical phenotypes, dual-mechanism candidates, and their implications for personalized clinical management, including surveillance and surgical intervention thresholds. The integration of molecular insights into clinical practice, along with cautious consideration of genes of uncertain significance, promises to enhance diagnostic precision and risk stratification in individuals and families affected by heritable aortic disease.

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CiteScore
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