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Next-generation sequencing identifies equine cartilage and subchondral bone miRNAs and suggests their involvement in osteochondrosis physiopathology

机译:下一代测序可鉴定马软骨和软骨下骨miRNA并提示它们参与骨软骨病的生理病理学研究

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摘要

BackgroundMicroRNAs (miRNAs) are an abundant class of small single-stranded non-coding RNA molecules ranging from 18 to 24 nucleotides. They negatively regulate gene expression at the post-transcriptional level and play key roles in many biological processes, including skeletal development and cartilage maturation. In addition, miRNAs involvement in osteoarticular diseases has been proved and some of them were identified as suitable biomarkers for pathological conditions. Equine osteochondrosis (OC) is one of the most prevalent juvenile osteoarticular disorders in horses and represents a major concern for animal welfare and economic reasons. Its etiology and pathology remain controversial and biological pathways as well as molecular mechanisms involved in the physiopathology are still unclear. This study aims to investigate the potential role of miRNAs in equine osteochondrosis (OC) physiopathology.Short-read NGS technology (SOLID™, Life Technologies) was used to establish a comprehensive repertoire of miRNA expressed in either equine cartilage or subchondral bone. Undamaged cartilage and subchondral bone samples from healthy (healthy samples) and OC-affected (predisposed samples) 10-month Anglo-Arabian foals were analysed. Samples were also subjected or not to an experimental mechanical loading to evaluate the role of miRNAs in the regulation of mechano-transduction pathways. Predicted targets of annotated miRNAs were identified using miRmap.
机译:背景技术MicroRNA(miRNA)是一类丰富的小型单链非编码RNA分子,范围为18至24个核苷酸。它们在转录后水平上负调控基因的表达,并在许多生物学过程(包括骨骼发育和软骨成熟)中发挥关键作用。另外,已经证实miRNA参与了骨关节疾病,其中一些被鉴定为适合病理状况的生物标志物。马骨软骨病(OC)是马匹中最普遍的青少年骨关节疾病之一,代表着动物福利和经济原因的主要问题。其病因和病理学仍存在争议,涉及生理病理学的生物学途径和分子机制仍不清楚。这项研究旨在研究miRNA在马软骨病(OC)生理病理学中的潜在作用。采用短读NGS技术(SOLID™,Life Technologies)建立了在马软骨或软骨下骨中表达的miRNA的完整库。分析了健康(健康样品)和OC感染(易感样品)10个月的盎格鲁-阿拉伯小马驹的软骨和软骨下骨样品的完整性。样品也接受或不接受实验性机械加载,以评估miRNA在调节机械传导途径中的作用。使用miRmap可以识别带注释的miRNA的预测靶标。

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