Zou Lin, Zhang Guichun, Liu Lifeng, Chen Chen, Cao Xuecheng, Cai Jinfang
Cell Physiol Biochem. 2017;41(6):2161-2170. doi: 10.1159/000475570. Epub 2017 Apr 20.
miR-124-3p has been reported to be involved in the pathogenesis of many diseases by modulating a variety of signaling pathways. In this study, we aimed to understand the impact of miR-124-3p expression level on the fracture healing in the patients of metaphyseal fracture of distal tibia, who received minimal invasive percutaneous plate osteosynthesis.
We firstly collected 195 patients of metaphyseal fracture of distal tibia, and the genotype of rs531564 was determined: GG (n=124) and GC+CC (n=71). We collected information of the participants including age, gender, total in-hospital time, smoking and alcohol consumption. Subsequently, we searched the miRNA database online to identify the possible binding sequence of miR-124-3p located within the 3'-UTR of the target gene. We did correlation analysis and luciferase to understand the regulatory relationship between miR-124-3p and BMP6. Meanwhile, we also conducted real time PCR and western blotting analysis to study the mRNA and protein expression level of BMP6 in different genotype groups. We then treated the cells with scramble control, miR-124-3p mimics, BMP6 siRNA and miR-124-3p inhibitors to investigate the influence of miR-124-3p on the expression of BMP6, viability and apoptosis of cells.
Total in-hospital time was significantly longer in GC+CC group than GG group. MiR-124-3p was up-regulated in GG group than GC and CC groups. BMP6 was virtual target of miR-124-3p. There existed negative regulatory relationship betweenmiR-124-3p and BMP6. The mRNA and protein expression level of BMP6 decreased in GG group. MiR-124-3p decreased the expression of BMP6. MiR-124-3p negatively interfered with the viability of cells and BMP6 positively interfered with the viability of cells. MiR-124-3p reduced apoptosis and BMP6 promoted apoptosis.
These data proved the expression of miR-124-3p was associated with the healing of metaphyseal fracture of distal tibia, and could be recognized as a biomarker to predict the healing of metaphyseal fracture of distal tibia.
据报道,miR-124-3p通过调节多种信号通路参与多种疾病的发病机制。在本研究中,我们旨在了解miR-124-3p表达水平对接受微创经皮钢板接骨术的胫骨干骺端骨折患者骨折愈合的影响。
我们首先收集了195例胫骨干骺端骨折患者,并确定了rs531564的基因型:GG(n=124)和GC+CC(n=71)。我们收集了参与者的信息,包括年龄、性别、总住院时间、吸烟和饮酒情况。随后,我们在线搜索miRNA数据库,以确定位于靶基因3'-UTR内的miR-124-3p的可能结合序列。我们进行了相关性分析和荧光素酶实验,以了解miR-124-3p与BMP6之间的调控关系。同时,我们还进行了实时PCR和蛋白质印迹分析,以研究不同基因型组中BMP6的mRNA和蛋白质表达水平。然后,我们用乱序对照、miR-124-3p模拟物、BMP6 siRNA和miR-124-3p抑制剂处理细胞,以研究miR-124-3p对BMP6表达、细胞活力和凋亡的影响。
GC+CC组的总住院时间明显长于GG组。GG组中的miR-124-3p表达高于GC组和CC组。BMP6是miR-124-3p的潜在靶标。miR-124-3p与BMP6之间存在负调控关系。GG组中BMP6的mRNA和蛋白质表达水平降低。miR-124-3p降低了BMP6的表达。miR-124-3p对细胞活力有负向干扰作用,而BMP6对细胞活力有正向干扰作用。miR-124-3p减少细胞凋亡,而BMP6促进细胞凋亡。
这些数据证明miR-124-3p的表达与胫骨干骺端骨折的愈合相关,可作为预测胫骨干骺端骨折愈合的生物标志物。