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Adeno-associated virus-mediated delivery of anti-miR-199a tough decoys attenuates cardiac hypertrophy by targeting

机译:adeno相关的病毒介导的抗miR-199a坚韧诱饵的递送通过靶向衰减心肌肥厚

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摘要

MicroRNAs (miRNAs) are important regulators in the process of cardiac hypertrophy and heart failure. Previous studies have shown that miR-199a is upregulated in pressure-overload cardiac hypertrophy and that inhibition of miR-199a attenuates cardiac hypertrophy in vitro. However, the therapeutic role of anti-miR-199a treatment in the cardiac hypertrophy in vivo model is less known. Here, we show an efficient and useful method to treat mouse cardiac hypertrophy and restore cardiac function through injection of adeno-associated virus (AAV)-mediated anti-miR-199a tough decoys (TuDs). RNA-seq transcriptome analysis indicated that genes related to cytoplasmic translation and mitochondrial respiratory chain complex assembly were upregulated in anti-miR-199a-treated recovered hearts. We further validated that PGC-1α is the direct target of miR-199a involved in the therapeutic effect and the regulation of the PGC-1α/ERRα axis and that the downstream pathway of mitochondrial fatty acid oxidation and oxidative phosphorylation constitute the underlying mechanism of the restored mitochondrial structure and function in our anti-miR-199a-treated mice. Our study highlights the important regulatory role of miR-199a in cardiac hypertrophy and the value of the AAV-mediated miRNA delivery system.
机译:Micrornas(miRNA)是心肺肥厚和心力衰竭过程中的重要调节因素。以前的研究表明,MIR-199A在压力过载心脏肥厚中上调,并且抑制miR-199a在体外衰减心脏肥大。然而,抗miR-199a在体内模型中的心脏肥大治疗的治疗作用较少。在这里,我们通过注射腺相关病毒(AAV)介导的抗miR-199A坚韧的诱饵(TUD)来表明一种有效和有用的方法来治疗小鼠心脏肥大和恢复心脏功能。 RNA-SEQ转录体分析表明,与细胞质翻译和线粒体呼吸链复合组装有关的基因在抗miR-199A处理的回收的心中上调。我们进一步经过验证,PGC-1α是参与治疗效果的miR-199a的直目标,并对PGC-1α/errα轴的调节以及线粒体脂肪酸氧化和氧化磷酸化的下游途径构成了潜在的机制在我们的抗miR-199A处理的小鼠中恢复了线粒体结构和功能。我们的研究突出了MiR-199A在心脏肥大和AAV介导的miRNA递送系统的价值中的重要监管作用。

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