Harnessing fetal and adult genetic reprograming for therapy of heart disease.

Journal of nature and science Pub Date : 2015-04-01
Shyam Sundar Nandi, Paras Kumar Mishra
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Abstract

Heart is the first organ formed during organogenesis. The fetal heart undergoes several structural and functional modifications to form the four-chambered mammalian heart. The adult heart shows different adaptations during compensatory and decompensatory heart failure. However, one common adaptation in the pathological heart is fetal reprogramming, where the adult heart expresses several genes and miRNAs which are active in the fetal stage. The fetal reprogramming in the failing heart raises several questions, such as whether the switch of adult to fetal genetic programming is an adaptive response to cope with adverse remodeling of the heart, does the expression of fetal genes protect the heart during compensatory and/or decompensatory heart failure, does repressing the fetal gene in the failing heart is protective to the heart? To answer these questions, we need to understand the expression of genes and miRNAs that are reprogrammed in the failing heart. In view of this, we provided an overview of differentially expressed genes and miRNAs, and their regulation in this review. Further, we elaborated novel strategies for a plausible future therapy of cardiovascular diseases.

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利用胎儿和成人基因重编程治疗心脏病。
心脏是器官形成过程中最先形成的器官。胎儿心脏经历了几个结构和功能的改变,形成了四腔哺乳动物的心脏。成人心脏在代偿性和失代偿性心力衰竭中表现出不同的适应性。然而,病理性心脏中常见的适应性是胎儿重编程,成年心脏表达了几个在胎儿阶段活跃的基因和mirna。胎儿在心力衰竭中的重编程提出了几个问题,如成人向胎儿基因编程的转换是否是应对心脏不良重塑的适应性反应,胎儿基因的表达是否在代偿性和/或失代偿性心力衰竭期间保护心脏,在心力衰竭中抑制胎儿基因是否对心脏有保护作用?为了回答这些问题,我们需要了解在衰竭的心脏中重新编程的基因和mirna的表达。鉴于此,本文就差异表达基因和mirna及其调控进行综述。此外,我们还详细阐述了未来心血管疾病治疗的新策略。
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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