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首页> 外文期刊>Molecules >Therapeutic Effects of HIF-1 on Bone Formation around Implants in Diabetic Mice Using Cell-Penetrating DNA-Binding Protein
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Therapeutic Effects of HIF-1 on Bone Formation around Implants in Diabetic Mice Using Cell-Penetrating DNA-Binding Protein

机译:HIF-1在使用细胞穿透DNA结合蛋白的糖尿病小鼠植入物周围骨形成的治疗作用

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Patients with uncontrolled diabetes are susceptible to implant failure due to impaired bone metabolism. Hypoxia-inducible factor 1 (HIF-1), a transcription factor that is up-regulated in response to reduced oxygen during bone repair, is known to mediate angiogenesis and osteogenesis. However, its function is inhibited under hyperglycemic conditions in diabetic patients. This study thus evaluates the effects of exogenous HIF-1 on bone formation around implants by applying HIF-1 to diabetic mice and normal mice via a protein transduction domain (PTD)-mediated DNA delivery system. Implants were placed in the both femurs of diabetic and normal mice. HIF-1 and placebo gels were injected to implant sites of the right and left femurs, respectively. We found that bone-to-implant contact (BIC) and bone volume (BV) were significantly greater in the HIF-1 treated group than placebo in diabetic mice (p < 0.05). Bioinformatic analysis showed that diabetic mice had 216 differentially expressed genes (DEGs) and 21 target genes. Among the target genes, NOS2, GPNMB, CCL2, CCL5, CXCL16, and TRIM63 were found to be associated with bone formation. Based on these results, we conclude that local administration of HIF-1 via PTD may boost bone formation around the implant and induce gene expression more favorable to bone formation in diabetic mice.
机译:由于骨代谢受损,患有不受控制的糖尿病的患者易于植入失败。缺氧 - 诱导因子1(HIF-1),已知在骨修复期间响应于减少氧而上调的转录因子,用于介导血管生成和骨肉发生。然而,其功能受糖尿病患者的高血糖病症抑制。因此,该研究通过施用HIF-1通过蛋白质转导域(PTD)介导的DNA递送系统来评估外源HIF-1对植入物周围骨形成的影响。将植入物置于糖尿病和正常小鼠的两种股骨中。 HIF-1和安慰剂凝胶分别注入右侧和左侧股骨的植入部位。我们发现,在糖尿病小鼠的HIF-1处理组中,骨对植物接触(BIC)和骨体积(BV)显着大于安慰剂(P <0.05)。生物信息分析表明,糖尿病小鼠具有216个差异表达基因(DEGS)和21个靶基因。在靶基因中,发现NOS2,GPNMB,CCL2,CCl5,CXCL16和TRIM63与骨形成相关。基于这些结果,我们得出结论,通过PTD局部施用HIF-1可以在植入物周围提高骨形成,并诱导糖尿病小鼠中骨形成更有利的基因表达。

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