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January 1, 2018Theranostics148 citationsOpen Access

LncRNA PFL contributes to cardiac fibrosis by acting as a competing endogenous RNA of let-7d

HLHaihai LiangHarbin Medical UniversityZPZhenwei PanElectrophysiologyXZXiaoguang ZhaoJiaozuo University

Key Result

Knockdown of the pro-fibrotic lncRNA PFL or overexpression of let-7d attenuated cardiac interstitial fibrosis and improved cardiac function in myocardial infarction mice.

Structured PICO

P
Population
Mice with myocardial infarction (MI) and mouse cardiac fibroblasts (CFs)
I
Intervention
Knockdown of PFL by adenoviruses carrying shRNA; forced expression of PFL; overexpression of let-7d by adenoviruses carrying let-7d precursor
C
Comparator
Control (implied)
O
Outcome
Cardiac interstitial fibrosis, ejection fraction (EF), and fractional shortening (FS)surrogate

The lncRNA PFL promotes cardiac fibrosis by acting as a competing endogenous RNA for let-7d, highlighting a novel mechanism and potential therapeutic target for post-MI cardiac remodeling.

Abstract

Rationale: Cardiac fibrosis is associated with various cardiovascular diseases and can eventually lead to heart failure. Dysregulation of long non-coding RNAs (lncRNAs) has recently been recognized as one of the key mechanisms involved in cardiac diseases. However, the potential roles and underlying mechanisms of lncRNAs in cardiac fibrosis have not been explicitly delineated. Methods and Results: Using a combination of in vitro and in vivo studies, we identified a lncRNA NONMMUT022555, which is designated as a pro-fibrotic lncRNA (PFL), and revealed that PFL is up-regulated in the hearts of mice in response to myocardial infarction (MI) as well as in the fibrotic cardiac fibroblasts (CFs). We found that knockdown of PFL by adenoviruses carrying shRNA attenuated cardiac interstitial fibrosis and improved ejection fraction (EF) and fractional shortening (FS) in MI mice. Further study showed that forced expression of PFL promoted proliferation, fibroblast-myofibroblast transition and fibrogenesis in mice CFs by regulating let-7d, whereas silencing PFL mitigated TGF-1-induced myofibroblast generation and fibrogenesis. More importantly, PFL acted as a competitive endogenous RNA (ceRNA) of let-7d, as forced expression of PFL reduced the expression and activity of let-7d. Moreover, let-7d levels were decreased in the MI mice and in fibrotic CFs. Inhibition of let-7d resulted in fibrogenesis in CFs, whereas forced expression of let-7d abated fibrogenesis through targeting platelet-activating factor receptor (Ptafr). Furthermore, overexpression of let-7d by adenoviruses carrying let-7d precursor impeded cardiac fibrosis and improved cardiac function in MI mice.

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Cite This Study

Liang et al. (2018) studied Cardiac fibrosis. Knockdown of PFL / Overexpression of let-7d was evaluated on Cardiac interstitial fibrosis, ejection fraction (EF), and fractional shortening (FS). Knockdown of the pro-fibrotic lncRNA PFL or overexpression of let-7d attenuated cardiac interstitial fibrosis and improved cardiac function in myocardial infarction mice.

synapsesocial.com/papers/6a98ea9f2d0bc910e975b7aehttps://doi.org/10.7150/thno.20846
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