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Biomimetic tubular nanofiber mesh and platelet rich plasma-mediated delivery of BMP-7 for large bone defect regeneration.

机译:仿生管状纳米纤维网和富血小板血浆介导的BMP-7递送,可用于大骨缺损再生。

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摘要

There is a growing need for successful bone tissue engineering strategies and advanced biomaterials that mimic the structure and function of native tissues carry great promise. Successful bone repair approaches may include an osteoconductive scaffold, osteoinductive growth factors, cells with an osteogenic potential and capacity for graft vascularisation. To increase osteoinductivity of biomaterials, the local combination and delivery of growth factors has been developed. In the present study we investigated the osteogenic effects of calcium phosphate (CaP)-coated nanofiber mesh tube-mediated delivery of BMP-7 from a PRP matrix for the regeneration of critical sized segmental bone defects in a small animal model. Bilateral full-thickness diaphyseal segmental defects were created in twelve male Lewis rats and nanofiber mesh tubes were placed around the defect. Defects received either treatment with a CaP-coated nanofiber mesh tube (n = 6), an un-coated nanofiber mesh tube (n=6) a CaP-coated nanofiber mesh tube with PRP (n=6) or a CaP-coated nanofiber mesh tube in combination with 5 μg BMP-7 and PRP (n = 6). After 12 weeks, bone volume and biomechanical properties were evaluated using radiography, microCT, biomechanical testing and histology. The results demonstrated significantly higher biomechanical properties and bone volume for the BMP group compared to the control groups. These results were supported by the histological evaluations, where BMP group showed the highest rate of bone regeneration within the defect. In conclusion, BMP-7 delivery via PRP enhanced functional bone defect regeneration, and together these data support the use of BMP-7 in the treatment of critical sized defects.
机译:对成功的骨组织工程学策略的需求日益增长,并且模仿天然组织的结构和功能的先进生物材料具有广阔的前景。成功的骨修复方法可能包括骨传导支架,骨诱导生长因子,具有成骨潜力和移植血管能力的细胞。为了增加生物材料的骨诱导性,已经开发了生长因子的局部结合和递送。在本研究中,我们研究了磷酸钙(CaP)涂层的纳米纤维网管介导的从PRP基质输送BMP-7的成骨作用,以在小动物模型中再生关键尺寸的节段性骨缺损。在十二只雄性Lewis大鼠中创建了双侧全厚度骨干节段性缺损,并在缺损周围放置了纳米纤维网管。使用CaP涂层的纳米纤维网管(n = 6),未涂层的纳米纤维网管(n = 6),带有PRP的CaP涂层的纳米纤维网管(n = 6)或CaP涂层的纳米纤维对缺陷进行治疗筛管与5μgBMP-7和PRP结合使用(n = 6)。 12周后,使用射线照相术,microCT,生物力学测试和组织学评估骨体积和生物力学特性。结果表明,与对照组相比,BMP组的生物力学性能和骨量明显更高。这些结果得到组织学评估的支持,其中BMP组在缺损内显示出最高的骨再生率。总之,通过PRP递送BMP-7可以增强功能性骨缺损的再生,这些数据共同支持BMP-7在治疗关键性尺寸缺损中的应用。

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