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CYR61 (CCN1) protein expression during fracture healing in an ovine tibial model and its relation to the mechanical fixation stability

机译:绵羊胫骨模型骨折愈合过程中CYR61(CCN1)蛋白的表达及其与机械固定稳定性的关系

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摘要

The formation of new blood vessels is a prerequisite for bone healing. CYR61 (CCN1), an extracellular matrix-associated signaling protein, is a potent stimulator of angiogenesis and mesenchymal stem cell expansion and differentiation. A recent study showed that CYR61 is expressed during fracture healing and suggested that CYR61 plays a significant role in cartilage and bone formation. The hypothesis of the present study was that decreased fixation stability, which leads to a delay in healing, would lead to reduced CYR61 protein expression in fracture callus. The aim of the study was to quantitatively analyze CYR61 protein expression, vascularization, and tissue differentiation in the osteotomy gap and relate to the mechanical fixation stability during the course of healing. A mid-shaft osteotomy of the tibia was performed in two groups of sheep and stabilized with either a rigid or semirigid external fixator, each allowing different amounts of interfragmentary movement. The sheep were sacrificed at 2, 3, 6, and 9 weeks postoperatively. The tibiae were tested biomechanically and histological sections from the callus were analyzed immunohistochemically with regard to CYR61 protein expression and vascularization. Expression of CYR61 protein was upregulated at the early phase of fracture healing (2 weeks), decreasing over the healing time. Decreased fixation stability was associated with a reduced upregulation of the CYR61 protein expression and a reduced vascularization at 2 weeks leading to a slower healing. The maximum cartilage callus fraction in both groups was reached at 3 weeks. However, the semirigid fixator group showed a significantly lower CYR61 immunoreactivity in cartilage than the rigid fixator group at this time point. The fraction of cartilage in the semirigid fixator group was not replaced by bone as quickly as in the rigid fixator group leading to an inferior histological and mechanical callus quality at 6 weeks and therefore to a slower healing. The results supply further evidence that CYR61 may serve as an important regulator of bone healing.
机译:新血管的形成是骨骼愈合的先决条件。 CYR61(CCN1)是一种与细胞外基质相关的信号蛋白,是血管生成和间充质干细胞扩增和分化的有效刺激剂。最近的一项研究表明,CYR61在骨折愈合过程中表达,提示CYR61在软骨和骨形成中起重要作用。本研究的假设是固定稳定性的降低,导致愈合的延迟,将导致骨折愈伤组织中CYR61蛋白表达的降低。该研究的目的是定量分析截骨间隙中CYR61蛋白的表达,血管化和组织分化,并涉及愈合过程中的机械固定稳定性。在两组绵羊中进行胫骨的中间轴截骨术,并用刚性或半刚性外固定器固定,每组允许不同量的节间运动。术后第2、3、6和9周处死绵羊。对胫骨进行了生物力学测试,并对愈伤组织的组织切片进行了免疫组织化学分析,分析了CYR61蛋白的表达和血管形成。 CYR61蛋白的表达在骨折愈合的早期(2周)上调,并随着愈合时间的延长而降低。固定稳定性的降低与CYR61蛋白表达的上调减少和2周时的血管形成减少有关,从而导致了较慢的愈合。两组均在3周时达到最大的软骨愈伤组织分数。然而,在这个时间点,半刚性固定器组的软骨中CYR61免疫反应性显着低于刚性固定器组。半刚性固定器组中的软骨部分没有像刚性固定器组中那样被骨替代,因此导致6周的组织学和机械mechanical愈质量较差,因此愈合较慢。结果提供了进一步的证据,表明CYR61可能是骨愈合的重要调节剂。

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