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Circulating miRNAs as diagnostic biomarkers for adolescent idiopathic scoliosis

机译:循环miRNA作为青少年特发性脊柱侧凸的诊断生物标志物

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The aetiology of adolescent idiopathic scoliosis (AIS) has been linked to many factors, such as asymmetric growth, neuromuscular condition, bone strength and genetic background. Recently, epigenetic factors have been proposed as contributors of AIS physiopathology, but information about the molecular mechanisms and pathways involved is scarce. Regarding epigenetic factors, microRNAs (miRNAs) are molecules that contribute to gene expression modulation by regulating important cellular pathways. We herein used Next-Generation Sequencing to discover a series of circulating miRNAs detected in the blood samples of AIS patients, which yielded a unique miRNA biomarker signature that diagnoses AIS with high sensitivity and specificity. We propose that these miRNAs participate in the epigenetic control of signalling pathways by regulating osteoblast and osteoclast differentiation, thus modulating the genetic background of AIS patients. Our study yielded two relevant results: 1) evidence for the deregulated miRNAs that participate in osteoblast/osteoclast differentiation mechanisms in AIS; 2) this miRNA-signature can be potentially used as a clinical tool for molecular AIS diagnosis. Using miRNAs as biomarkers for AIS diagnostics is especially relevant since miRNAs can serve for early diagnoses and for evaluating the positive effects of applied therapies to therefore reduce the need of high-risk surgical interventions.
机译:青少年特发性脊柱侧凸(AIS)的疾病与许多因素有关,例如不对称的生长,神经肌肉状况,骨骼强度和遗传背景。最近,已经提出了表观因素作为AIS Physiopathology的贡献者,但有关所涉及的分子机制和途径的信息是稀缺的。关于表观遗传因素,MicroRNAs(miRNA)是通过调节重要细胞途径来促进基因表达调制的分子。在这里使用下一代测序来发现在AIS患者的血液样本中发现一系列循环miRNA,其产生独特的miRNA生物标志物签名,诊断具有高灵敏度和特异性的AIS。我们提出,这些miRNA通过调节成骨细胞和破骨细胞分化来调节AIS患者的遗传背景来参与信号传导途径的表观遗传控制。我们的研究产生了两种相关结果:1)解毒MiRNA的证据参与AIS中的成骨细胞/骨壳分化机制; 2)该miRNA签名可以潜在用作分子AIS诊断的临床工具。使用miRNA作为AIS诊断的生物标志物尤其相关,因为MiRNA可以用于早期诊断和评估应用疗法的积极影响,因此降低了高风险外科干预的需要。

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