首页> 美国卫生研究院文献>International Journal of Nanomedicine >A novel nano-copper-bearing stainless steel with reduced Cu2+ release only inducing transient foreign body reaction via affecting the activity of NF-κB and Caspase 3
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A novel nano-copper-bearing stainless steel with reduced Cu2+ release only inducing transient foreign body reaction via affecting the activity of NF-κB and Caspase 3

机译:减少铜离子释放的新型纳米含铜不锈钢仅通过影响NF-κB和Caspase 3的活性而引起瞬时异物反应

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摘要

Foreign body reaction induced by biomaterials is a serious problem in clinical applications. Although 317L-Cu stainless steel (317L-Cu SS) is a new type of implant material with antibacterial ability and osteogenic property, the foreign body reaction level still needs to be assessed due to its Cu2+ releasing property. For this purpose, two macrophage cell lines were selected to detect cellular proliferation, apoptosis, mobility, and the secretions of inflammatory cytokines with the influence of 317L-Cu SS. Our results indicated that 317L-Cu SS had no obvious effect on the proliferation and apoptosis of macrophages; however, it significantly increased cellular migration and TNF-α secretion. Then, C57 mice were used to assess foreign body reaction induced by 317L-Cu SS. We observed significantly enhanced recruitment of inflammatory cells (primarily macrophages) with increased TNF-α secretion and apoptosis level in tissues around the materials in the early stage of implantation. With tissue healing, both inflammation and apoptosis significantly decreased. Further, we discovered that NF-κB pathway and Caspase 3 played important roles in 317L-Cu SS induced inflammation and apoptosis. We concluded that 317L-Cu SS could briefly promote the inflammation and apoptosis of surrounding tissues by regulating the activity of NF-κB pathway and Caspase 3. All these discoveries demonstrated that 317L-Cu SS has a great potential for clinical application.
机译:生物材料引起的异物反应在临床应用中是一个严重的问题。尽管317L-Cu不锈钢(317L-Cu SS)是一种具有抗菌能力和成骨性的新型植入材料,但由于Cu 2 + 释放,仍需要评估异物反应水平属性。为此目的,选择了两种巨噬细胞系以检测细胞增殖,凋亡,迁移率以及在317L-Cu SS的影响下炎性细胞因子的分泌。我们的结果表明,317L-Cu SS对巨噬细胞的增殖和凋亡没有明显的影响。但是,它显着增加了细胞迁移和TNF-α分泌。然后,使用C57小鼠评估由317L-Cu SS诱导的异物反应。我们观察到,在植入早期,炎症物质(主要是巨噬细胞)的募集显着增强,同时材料周围组织中的TNF-α分泌和细胞凋亡水平增加。随着组织的愈合,炎症和凋亡均明显减少。此外,我们发现NF-κB途径和Caspase 3在317L-Cu SS诱导的炎症和细胞凋亡中起重要作用。我们得出的结论是,317L-Cu SS通过调节NF-κB途径和Caspase 3的活性可以短暂地促进周围组织的炎症和凋亡。所有这些发现表明317L-Cu SS具有巨大的临床应用潜力。

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