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Silencing of Wnt5a prevents interleukin-1 beta-induced collagen type II degradation in rat chondrocytes

机译:WNT5a的沉默可防止白细胞介素-1β诱导的胶原II型II型降解大鼠软骨细胞

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摘要

Osteoarthritis (OA) is a joint disease, and few treatments to date have been able to delay OA progression. The degradation of collagen type II (COL2) in the cartilage matrix is an important initiating factor for OA progression; the upregulation of Wnt5a protein activates COL2 degradation. In the present study, small interfering RNA of Wnt-5a was delivered by a lentiviral vector (LV-Wnt5a-RNAi) to silence Wnt-5a mRNA and prevent COL2 degradation. To determine the function of LV-Wnt5a-RNAi, the OA chondrocyte model (OA-like chondrocytes) were constructed using interleukin (IL)-1 beta. Detected using reverse transcription-quantitative polymerase chain reaction (RT-qPCR), Wnt-5a mRNA in the OA-like chondrocytes were upregulated in a time-dependent manner, indicating that OA-like chondrocytes were successfully constructed. The bioactivity of OA-like chondrocytes was determined using Live-Dead staining, and the result illustrated that the OA-like chondrocytes stimulated with IL-1 beta for 6 h remained viable, and these were used in Wnt5a silencing. The OA-like chondrocytes were divided into three groups: Group I, cultivated with common medium; group II, cultivated with common medium supplemented with empty lentiviral vector; group III, cultivated with common medium supplemented with LV-Wnt5a-RNAi. The efficiency of LV-Wnt5a-RNAi transfection was determined using fluorescence microscopy, the result of which indicated that LV-Wnt5a-RNAi could efficiently be transfected into the OA-like chondrocytes. The LV-Wnt5a-RNAi efficiency for the Wnt5a mRNA silencing was determined using RT-qPCR. The result illustrated that the mRNA of Wnt5a in group III was significantly lower in group I compared with that in group II (P<0.05), indicating that the LV-Wnt5a-RNAi could successfully silence Wnt5a mRNA. To further verify whether the silencing of Wnt5a mRNA could prevent COL2 degradation, western blotting and immunohistochemical analyses were performed. The results demonstrated that COL2 in group III was significantly higher compared with that in groups I and II (P<0.05), which illustrated that the silencing of Wnt5a mRNA could prevent COL2 degradation. In conclusion, LV-Wnt5a-RNAi was formed successfully and could efficiently silence Wnt5a mRNA expressed by OA-like chondrocytes. In addition, the silencing of Wnt5a mRNA could prevent the degradation of COL2 in OA-like chondrocytes, confirming that LV-Wnt5a-RNAi may be used as a novel tool for OA treatment.
机译:骨关节炎(OA)是一种关节疾病,迄今为止迄今为止的治疗方法已经能够延迟OA进展。软骨基质中胶原II(COL2)的降解是OA进展的重要启动因子; WNT5A蛋白的上调激活COL2降解。在本研究中,通过慢病毒载体(LV-Wnt5a-Rnai)递送Wnt-5a的小干扰RNA,以沉默Wnt-5a mRNA并预防COL2降解。为了确定LV-Wnt5a-Rnai的功能,使用白细胞介素(IL)-1β构建OA软骨细胞模型(oA样软骨细胞)。检测使用逆转录定量聚合酶链反应(RT-QPCR),以时间依赖性方式上调OA样软骨细胞中的WNT-5A mRNA,表明成功构建了OA样软骨细胞。使用活死染色测定OA样软骨细胞的生物活性,结果表明,用IL-1β刺激6小时刺激的OA样软骨细胞残留活性,并且这些是在WNT5a沉默中使用的。将OA样软骨细胞分为三组:I族,含有常见培养基; II组,用常见的培养基培养,含有空的慢病毒载体; III族,用常见的培养基培养,含有LV-Wnt5a-Rnai。使用荧光显微镜测定LV-Wnt5a-RNAI转染的效率,结果表明,其能够将LV-Wnt5a-Rnai有效转染到类似的软骨细胞中。使用RT-QPCR测定WNT5A mRNA沉默的LV-Wnt5a-RNAi效率。结果表明,III组III中的WNT5a中的mRNA在II组中显着降低(P <0.05),表明LV-Wnt5a-RNAi可以成功沉默WNT5a mRNA。为了进一步验证Wnt5a mRNA的沉默是否可以预防COL2降解,进行蛋白质印迹和免疫组织化学分析。结果表明,与I和II组中,III组中的COL2显着提高(P <0.05),这表明WNT5A mRNA的沉默可以预防COL2降解。总之,成功形成了LV-Wnt5a-RNai,可以有效地沉默由鲜美软骨细胞表达的Wnt5a mRNA。此外,Wnt5a mRNA的沉默可以防止含量的COL2的降解在OA样软骨细胞中,证实LV-Wnt5a-RNAi可以用作OA处理的新型工具。

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