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Bioinformatics and Microarray Analysis of miRNAs in Aged Female Mice Model Implied New Molecular Mechanisms for Impaired Fracture Healing

机译:老年雌性小鼠模型中miRNA的生物信息学和微阵列分析暗示了骨折愈合受损的新分子机制。

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Impaired fracture healing in aged females is still a challenge in clinics. MicroRNAs (miRNAs) play important roles in fracture healing. This study aims to identify the miRNAs that potentially contribute to the impaired fracture healing in aged females. Transverse femoral shaft fractures were created in adult and aged female mice. At post-fracture 0-, 2- and 4-week, the fracture sites were scanned by micro computed tomography to confirm that the fracture healing was impaired in aged female mice and the fracture calluses were collected for miRNA microarray analysis. A total of 53 significantly differentially expressed miRNAs and 5438 miRNA-target gene interactions involved in bone fracture healing were identified. A novel scoring system was designed to analyze the miRNA contribution to impaired fracture healing (RCIFH). Using this method, 11 novel miRNAs were identified to impair fracture healing at 2- or 4-week post-fracture. Thereafter, function analysis of target genes was performed for miRNAs with high RCIFH values. The results showed that high RCIFH miRNAs in aged female mice might impair fracture healing not only by down-regulating angiogenesis-, chondrogenesis-, and osteogenesis-related pathways, but also by up-regulating osteoclastogenesis-related pathway, which implied the essential roles of these high RCIFH miRNAs in impaired fracture healing in aged females, and might promote the discovery of novel therapeutic strategies.
机译:老年女性骨折愈合不良仍然是诊所面临的挑战。 MicroRNA(miRNA)在骨折愈合中起重要作用。这项研究旨在鉴定可能导致老年女性骨折愈合受损的miRNA。在成年和成年雌性小鼠中产生股骨干横断骨折。骨折后0、2和4周,通过显微计算机断层扫描术扫描骨折部位,以确认衰老雌性小鼠的骨折愈合受到损害,并收集骨折老茧用于miRNA微阵列分析。鉴定出总共53个差异显着表达的miRNA和5438个与骨折愈合有关的miRNA-靶基因相互作用。设计了一种新颖的评分系统来分析miRNA对受损骨折愈合(RCIFH)的作用。使用这种方法,鉴定出11种新颖的miRNA会破坏骨折后2周或4周的骨折愈合。此后,对具有高RCIFH值的miRNA进行靶基因的功能分析。结果表明,高龄RCIFH miRNAs可能会通过下调血管生成,软骨生成和成骨相关途径,以及上调破骨细胞生成相关途径来破坏骨折愈合,这暗示了RCIFH miRNA的重要作用。这些高RCIFH miRNA会损害老年女性的骨折愈合,并可能促进发现新的治疗策略。

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