Deciphering the emerging landscape of HOX genes in cardiovascular biology, atherosclerosis and beyond (Review).

IF 8.3 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY
ACS Applied Materials & Interfaces Pub Date : 2024-02-01 Epub Date: 2023-12-22 DOI:10.3892/ijmm.2023.5341
Yu Zhou, Qiang Wu, Yingchu Guo
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引用次数: 0

Abstract

Atherosclerosis, a dominant driving force underlying multiple cardiovascular events, is an intertwined and chronic inflammatory disease characterized by lipid deposition in the arterial wall, which leads to diverse cardiovascular problems. Despite unprecedented advances in understanding the pathogenesis of atherosclerosis and the substantial decline in cardiovascular mortality, atherosclerotic cardiovascular disease remains a global public health issue. Understanding the molecular landscape of atherosclerosis is imperative in the field of molecular cardiology. Recently, compelling evidence has shown that an important family of homeobox (HOX) genes endows causality in orchestrating the interplay between various cardiovascular biological processes and atherosclerosis. Despite seemingly scratching the surface, such insight into the realization of biology promises to yield extraordinary breakthroughs in ameliorating atherosclerosis. Primarily recapitulated herein are the contributions of HOX in atherosclerosis, including diverse cardiovascular biology, knowledge gaps, remaining challenges and future directions. A snapshot of other cardiovascular biological processes was also provided, including cardiac/vascular development, cardiomyocyte pyroptosis/apoptosis, cardiac fibroblast proliferation and cardiac hypertrophy, which are responsible for cardiovascular disorders. Further in‑depth investigation of HOX promises to provide a potential yet challenging landscape, albeit largely undetermined to date, for partially pinpointing the molecular mechanisms of atherosclerosis. A plethora of new targeted therapies may ultimately emerge against atherosclerosis, which is rapidly underway. However, translational undertakings are crucially important but increasingly challenging and remain an ongoing and monumental conundrum in the field.

解密心血管生物学、动脉粥样硬化及其他方面的 HOX 基因新貌(综述)。
动脉粥样硬化是导致多种心血管事件的主要驱动力,是一种以动脉壁脂质沉积为特征的交织性慢性炎症疾病,会导致多种心血管问题。尽管在了解动脉粥样硬化的发病机制方面取得了前所未有的进展,心血管疾病死亡率也大幅下降,但动脉粥样硬化性心血管疾病仍然是一个全球性的公共卫生问题。了解动脉粥样硬化的分子结构是分子心脏病学领域的当务之急。最近,令人信服的证据表明,一个重要的同源染色体(HOX)基因家族在协调各种心血管生物过程与动脉粥样硬化之间的相互作用方面具有因果关系。尽管这只是表面现象,但这种对生物学实现的洞察力有望在改善动脉粥样硬化方面带来非凡的突破。本文主要概述了 HOX 在动脉粥样硬化中的贡献,包括各种心血管生物学、知识差距、尚存挑战和未来方向。此外,还简要介绍了其他心血管生物学过程,包括心脏/血管发育、心肌细胞热解/凋亡、心脏成纤维细胞增殖和心肌肥大,这些都是导致心血管疾病的原因。对 HOX 的进一步深入研究有望为部分确定动脉粥样硬化的分子机制提供一个潜在但具有挑战性的前景,尽管迄今为止这一前景在很大程度上尚未确定。针对动脉粥样硬化的大量新靶向疗法最终可能会出现,而这一进程正在迅速展开。然而,转化工作至关重要,但也越来越具有挑战性,仍然是该领域持续存在的巨大难题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Materials & Interfaces
ACS Applied Materials & Interfaces 工程技术-材料科学:综合
CiteScore
16.00
自引率
6.30%
发文量
4978
审稿时长
1.8 months
期刊介绍: ACS Applied Materials & Interfaces is a leading interdisciplinary journal that brings together chemists, engineers, physicists, and biologists to explore the development and utilization of newly-discovered materials and interfacial processes for specific applications. Our journal has experienced remarkable growth since its establishment in 2009, both in terms of the number of articles published and the impact of the research showcased. We are proud to foster a truly global community, with the majority of published articles originating from outside the United States, reflecting the rapid growth of applied research worldwide.
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