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Nano-copper-bearing stainless steel promotes fracture healing by accelerating the callus evolution process

机译:纳米铜轴承不锈钢通过促进愈伤组织的演化过程来促进骨折愈合

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摘要

Treatment for fractures requires internal fixation devices, which are mainly produced from stainless steel or titanium alloy without biological functions. Therefore, we developed a novel nano-copper-bearing stainless steel with nano-sized copper-precipitation (317L-Cu SS). Based on previous studies, this work explores the effect of 317L-Cu SS on fracture healing; that is, proliferation, osteogenic differentiation, osteogenesis-related gene expression, and lysyl oxidase activity of human bone mesenchymal stem cells were detected in vitro. Sprague–Dawley rats were used to build an animal fracture model, and fracture healing and callus evolution were investigated by radiology (X-ray and micro-CT), histology (H&E, Masson, and safranin O/fast green staining), and histomorphometry. Further, the Cu2+ content and Runx2 level in the callus were determined, and local mechanical test of the fracture was performed to assess the healing quality. Our results revealed that 317L-Cu SS did not affect the proliferation of human bone mesenchymal stem cells, but promoted osteogenic differentiation and the expression of osteogenesis-related genes. In addition, 317L-Cu SS upregulated the lysyl oxidase activity. The X-ray and micro-CT results showed that the callus evolution efficiency and fracture healing speed were superior for 317L-Cu SS. Histological staining displayed large amounts of fibrous tissues at 3 weeks, and cartilage and new bone at 6 weeks. Further, histomorphometric analysis indicated that the callus possessed higher osteogenic efficiency at 6 weeks, and a high Cu2+ content and increased Runx2 expression were observed in the callus for 317L-Cu SS. Besides, the mechanical strength of the fracture site was much better than that of the control group. Overall, we conclude that 317L-Cu SS possesses the ability to increase Cu2+ content and promote osteogenesis in the callus, which could accelerate the callus evolution process and bone formation to provide faster and better fracture healing.
机译:骨折的治疗需要内部固定装置,该装置主要由不具有生物学功能的不锈钢或钛合金制成。因此,我们开发了一种具有纳米级铜沉淀物(317L-Cu SS)的新型纳米含铜不锈钢。在先前研究的基础上,这项工作探索了317L-Cu SS对骨折愈合的影响。即在体外检测人骨间充质干细胞的增殖,成骨分化,成骨相关基因表达和赖氨酰氧化酶活性。使用Sprague-Dawley大鼠建立动物骨折模型,并通过放射学(X射线和显微CT),组织学(H&E,Masson和番红O /快速绿色染色)和组织形态计量学研究骨折的愈合和愈伤组织的演变。 。此外,确定愈伤组织中Cu 2 + 的含量和Runx2水平,并对骨折进行局部力学测试以评估其愈合质量。我们的结果表明,317L-Cu SS不会影响人骨间充质干细胞的增殖,但会促进成骨细胞分化和成骨相关基因的表达。此外,317L-Cu SS上调了赖氨酰氧化酶的活性。 X射线和显微CT结果表明,317L-Cu SS的愈伤组织演化效率和骨折愈合速度均优异。组织学染色在第3周显示大量纤维组织,在第6周显示软骨和新骨。进一步的组织形态分析表明,愈伤组织在6周时具有较高的成骨效率,并且在317L-Cu SS的愈伤组织中观察到高的Cu 2 + 含量和Runx2表达增加。此外,骨折部位的机械强度明显优于对照组。总的来说,我们得出结论,317L-Cu SS具有增加Cu 2 + 含量并促进愈伤组织中成骨的能力,这可以加速愈伤组织的演化过程和骨形成,从而提供更快更好的骨折愈合。

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