Therapeutic approaches for cardiac regeneration and repair

医学 再生(生物学) 心脏移植 心功能曲线 心脏病学 移植 临床试验 内科学 心力衰竭 细胞生物学 生物信息学 生物
作者
Hisayuki Hashimoto,Eric N. Olson,Rhonda Bassel‐Duby
出处
期刊:Nature Reviews Cardiology [Nature Portfolio]
卷期号:15 (10): 585-600 被引量:447
标识
DOI:10.1038/s41569-018-0036-6
摘要

Ischaemic heart disease is a leading cause of death worldwide. Injury to the heart is followed by loss of the damaged cardiomyocytes, which are replaced with fibrotic scar tissue. Depletion of cardiomyocytes results in decreased cardiac contraction, which leads to pathological cardiac dilatation, additional cardiomyocyte loss, and mechanical dysfunction, culminating in heart failure. This sequential reaction is defined as cardiac remodelling. Many therapies have focused on preventing the progressive process of cardiac remodelling to heart failure. However, after patients have developed end-stage heart failure, intervention is limited to heart transplantation. One of the main reasons for the dramatic injurious effect of cardiomyocyte loss is that the adult human heart has minimal regenerative capacity. In the past 2 decades, several strategies to repair the injured heart and improve heart function have been pursued, including cellular and noncellular therapies. In this Review, we discuss current therapeutic approaches for cardiac repair and regeneration, describing outcomes, limitations, and future prospects of preclinical and clinical trials of heart regeneration. Substantial progress has been made towards understanding the cellular and molecular mechanisms regulating heart regeneration, offering the potential to control cardiac remodelling and redirect the adult heart to a regenerative state. This Review discusses the advances in therapeutic approaches for cardiac repair and regeneration, including cell-based therapies as well as the use of secretory factors, such as microRNAs and exosomes, direct reprogramming strategies, and gene editing to control cardiac remodelling and redirect the adult heart to a regenerative state, and highlights the future prospects of preclinical and clinical trials of heart regeneration.
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