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Spotlight on HOX cluster‑embedded antisense lncRNAs in cardiovascular diseases (Review)
1Department of Cardiology, Guizhou Provincial People's Hospital, Guiyang, Guizhou 550002, P.R. China.
Insights
Homeobox cluster-embedded antisense long non-coding RNAs (HOX-lncRNAs) are emerging as key players in atherosclerosis, a chronic inflammatory cardiovascular disease. Further research is crucial to fully understand their role and develop targeted therapies.
Area of Science:
- Cardiovascular Biology
- Molecular Genetics
- RNA Biology
Background:
- Atherosclerosis is a leading cause of cardiovascular events, driven by complex inflammatory processes.
- Despite advances in prevention, atherosclerotic cardiovascular disease remains a major global health burden.
- Understanding atherosclerosis pathogenesis is vital for developing effective translational strategies.
Conclusions:
- The role of HOX-lncRNAs in atherosclerosis is an active area of research requiring further investigation.
- Understanding HOX-lncRNAs offers potential for novel therapeutic strategies against atherosclerosis.
- Continued research is essential to unravel the molecular underpinnings and clinical applications of HOX-lncRNAs.
Abstract:
Atherosclerosis is a complex and chronic inflammatory disease driven by multiple pathophysiological processes that are responsible for diverse cardiovascular events. Atherosclerotic cardiovascular disease, despite substantial triumphs in primary and secondary prevention, remains a dominant epidemic that impairs human health. Therefore, deciphering the pathogenesis of atherosclerosis will provide a real‑world translational understanding. Homeobox cluster‑embedded antisense long non‑coding RNAs (HOX‑lncRNAs), a nascent class of lncRNA molecules with versatile roles in cancer, can also orchestrate various cell functions in cardiovascular disorders and have thus captured the attention of many researchers. Subsequently, numerous studies have demonstrated the role of HOX‑lncRNAs as potential modulators of atherosclerosis. Nevertheless, given that the understanding of HOX‑lncRNAs in atherosclerosis is only just emerging, ongoing research must be initiated to thoroughly pinpoint such causal roles. The present review aimed to highlight the important contributions of HOX‑lncRNAs to atherosclerosis and other pivotal biological processes related to cardiovascular disease. The review concludes with a discussion of the limitations, outlook, challenges and possible solutions associated with HOX‑lncRNAs in atherosclerosis. Looking forward, this may lead to extraordinary breakthroughs in revealing the molecular underpinnings of HOX‑lncRNAs and may offer a promising yet challenging landscape for robust therapeutic strategies for atherosclerosis and/or associated cardiovascular disorders.
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