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长链非编码RNA在心力衰竭中的作用及临床意义
黄思1,张圳2,万静静2,3,刘霞2,张卫东1,2*
0
(1. 广东药科大学中药学院, 广州 510006;
2. 海军军医大学(第二军医大学)药学系天然药物化学教研室, 上海 200433;
3. 上海交通大学药学院, 上海 200240
*通信作者)
摘要:
长链非编码RNA(lncRNA)曾被认为是基因组转录的"噪音",不具有生物学功能。近年来,越来越多的证据表明,lncRNA在不同发育阶段或疾病状态中动态表达,并且在基因表达和翻译的诸多环节中都发挥调节作用。作为一种调节因子,lncRNA已被证实参与心脏生长发育的基因调控,同时参与心力衰竭的多个病理变化,主要包括心肌肥大、纤维化和血管新生等。因此,lncRNA被认为是控制心脏生理和病理复杂调节网络的核心枢纽,有望成为心力衰竭的治疗靶标。本文综述心力衰竭中lncRNA的作用和机制,并评估了lncRNA在临床诊治中的前景。
关键词:  心力衰竭  长链非编码RNA  肥厚性心肌病  纤维化
DOI:10.16781/j.0258-879x.2021.04.0411
投稿时间:2020-04-17修订日期:2020-07-21
基金项目:国家自然科学基金(81773726),上海市科技创新行动计划重点项目(19401900100).
Role and clinical significance of long non-coding RNA in heart failure
HUANG Si1,ZHANG Zhen2,WAN Jing-jing2,3,LIU Xia2,ZHANG Wei-dong1,2*
(1. School of Traditional Chinese Medicine, Guangdong Pharmaceutical University, Guangzhou 510006, Guangdong, China;
2. Department of Natural Medicinal Chemistry, School of Pharmacy, Naval Medical University(Second Military Medical University), Shanghai 200433, China;
3. School of Pharmacy, Shanghai Jiao Tong University, Shanghai 200240, China
*Corresponding author)
Abstract:
Long non-coding RNA (lncRNA) was once considered to be the "noise" of genome transcription without biological function. In recent years, increasing evidence shows that lncRNA is dynamically expressed at different developmental stages or disease statuses and plays a regulatory role in gene expression and translation. In particular, the effectiveness of lncRNA has been proven in gene regulation of cardiac development. It also participates in multiple pathological changes of heart failure such as cardiac hypertrophy, fibrosis, angiogenesis, etc. Therefore, lncRNA is considered to be the core hub of complex regulatory networks controlling cardiac physiology and pathology, and is expected to become a therapeutic target for heart failure. This article reviews the role and mechanism of lncRNA in heart failure, and evaluates its prospects in the future clinical diagnosis and treatment.
Key words:  heart failure  long non-coding RNA  hypertrophyic cardiomyopathy  fibrosis