Heart Failure Research Group, Baker IDI Heart and Diabetes Research Institute VIC, Australia.
Heart Centre, Alfred Hospital, Melbourne, VIC, Australia.
Eur J Heart Fail. 2016 Aug;18(8):1000-8. doi: 10.1002/ejhf.517. Epub 2016 Apr 12.
Differential microRNA expression in peripheral blood has been observed in patients with heart failure, suggesting their value as potential biomarkers and likely contributors to disease mechanisms. In the present study, we aimed to evaluate the transcardiac gradient of 84 cardio-microRNAs in healthy and failing hearts to determine which microRNAs are released or absorbed by the myocardium in heart failure.
Eight healthy volunteers and nine patients with congestive heart failure were included. Arterial and coronary sinus blood samples were collected, and microRNAs were extracted. The expression of microRNAs was analysed using real-time PCR by the miScript miRNA PCR Array Human Cardiovascular Disease. In coronary sinus samples, the microRNAs miR-16-5p, miR-27a-3p, miR-27b-3p, miR-29b-3p, miR-29c-3p, miR-30e-5p, miR-92a-3p, miR-125b-5p, miR-140-5p, miR-195-5p, miR-424-5p, and miR-451a were significantly down-regulated, and let-7a-5p, let-7c-5p, let-7e-5p, miR-23b-3p, miR-107, miR-155-5p, miR-181a-5p, miR-181b-5p and miR-320a were up-regulated in heart failure. Left ventricular filling pressure was negatively correlated with miR-195, miR-16, miR-29b-3p, miR-29c-3p, miR-451a, and miR-92a-3p. The failing heart released let-7b-5p, let-7c-5p, let-7e-5p, miR-122-5p, and miR-21-5p, and absorbed miR-16-5p, miR-17-5p, miR-27a-3p, miR-30a-5p, miR-30d-5p, miR-30e-5p, miR-130a-3p, miR-140-5p, miR-199a-5p, and miR-451a. In silico analyses suggest that the transcardiac gradient of microRNAs in heart failure may target pathways related to heart disease.
We determined the transcardiac gradient of cardio-microRNAs in failing hearts, which supports the use of these microRNAs as potential biomarkers. The microRNAs described here may have a role in the pathophysiology of heart failure as they might be involved in pathways related to disease progression, including fibrosis.
已有研究表明,心力衰竭患者外周血中的差异 microRNA 表达,提示其作为潜在生物标志物的价值,并可能有助于了解疾病机制。本研究旨在评估健康和衰竭心脏中心脏的跨心梯度中 84 种心脏 microRNA,以确定哪些 microRNA 在心力衰竭中被心肌释放或吸收。
纳入 8 名健康志愿者和 9 名充血性心力衰竭患者。采集动脉和冠状窦血样,并提取 microRNA。使用 miScript miRNA PCR Array Human Cardiovascular Disease 通过实时 PCR 分析 microRNA 的表达。在冠状窦样本中,miR-16-5p、miR-27a-3p、miR-27b-3p、miR-29b-3p、miR-29c-3p、miR-30e-5p、miR-92a-3p、miR-125b-5p、miR-140-5p、miR-195-5p、miR-424-5p 和 miR-451a 的表达显著下调,let-7a-5p、let-7c-5p、let-7e-5p、miR-23b-3p、miR-107、miR-155-5p、miR-181a-5p、miR-181b-5p 和 miR-320a 在心力衰竭中上调。左心室充盈压与 miR-195、miR-16、miR-29b-3p、miR-29c-3p、miR-451a 和 miR-92a-3p 呈负相关。衰竭的心脏释放了 let-7b-5p、let-7c-5p、let-7e-5p、miR-122-5p 和 miR-21-5p,并吸收了 miR-16-5p、miR-17-5p、miR-27a-3p、miR-30a-5p、miR-30d-5p、miR-30e-5p、miR-130a-3p、miR-140-5p、miR-199a-5p 和 miR-451a。计算机分析表明,心力衰竭中心脏 microRNA 的跨心梯度可能靶向与心脏病相关的途径。
本研究确定了衰竭心脏中心脏 microRNA 的跨心梯度,支持将这些 microRNA 用作潜在的生物标志物。这里描述的 microRNA 可能在心力衰竭的病理生理学中发挥作用,因为它们可能参与与疾病进展相关的途径,包括纤维化。