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铜改性钴铬颗粒用于减轻磨损颗粒诱导的炎症和破骨细胞生成。

Copper modified cobalt-chromium particles for attenuating wear particle induced-inflammation and osteoclastogenesis.

作者信息

Lu Yanjin, Xu Xiongcheng, Yang Chunguang, Hosseinkhani Saman, Zhang Chenke, Luo Kai, Tang Kanglai, Yang Ke, Lin Jinxin

机构信息

Key Laboratory of Optoelectronic Materials Chemistry and Physics, Fujian Institute of Research on the Structure of Matter, Chinese Academy of Sciences, Fuzhou 350001, China; Key Laboratory of Opto-Electronic Science and Technology for Medicine of Ministry of Education, Fujian Provincial Key Laboratory of Photonics Technology, College of Photonic and Electronic Engineering, Fujian Normal University, Fuzhou 350117, China; Fujian Science & Technology Innovation Laboratory for Optoelectronic Information of China, Fuzhou, Fujian 350108, China.

Research Center of Oral Tissue Engineering, School and Hospital of Stomatology, Fujian Medical University, Fuzhou 350001, China.

出版信息

Biomater Adv. 2023 Apr;147:213315. doi: 10.1016/j.bioadv.2023.213315. Epub 2023 Jan 28.

Abstract

The nature of aseptic prosthetic loosening mainly relates to the wear particles that induce inflammation and subsequent osteoclastogenesis. The ideal approach to impede wear particle-induced osteolysis should minimize inflammation and osteoclastogenesis. In this work, Co29Cr9W3Cu particles were used as a research model for the first time to explore the response of Co29Cr9W3Cu particles to inflammatory response and osteoclast activation in vitro and in vivo by using Co29Cr9W particles as the control group. In vitro studies showed that the Co29Cr9W3Cu particles could promote the generation of M2-phenotype macrophages and increase the expression level of anti-inflammatory factor IL-10, while inhibiting the formation of M1-phenotype macrophages and down-regulating the expression of inflammatory factors TNF-α, IL-6 and IL-1β; More importantly, the Co29Cr9W3Cu particles reduced the expression of NF-κB and downstream osteoclast related-specific transcription marker genes, such as TRAP, NFATc1, and Cath-K; In vivo results indicated that the Co29Cr9W3Cu particles exposed to murine calvarial contributed to decreasing the amount of osteoclast and osteolysis area. These findings collectively demonstrated that Cu-bearing cobalt-chromium alloy may potentially delay the development of aseptic prosthetic loosening induced by wear particles, which is expected to provide evidence of Co29Cr9W3Cu alloy as an alternative material of joint implants with anti-wear associated osteolysis.

摘要

无菌性假体松动的本质主要与诱导炎症及随后破骨细胞生成的磨损颗粒有关。阻止磨损颗粒诱导骨溶解的理想方法应尽量减少炎症和破骨细胞生成。在本研究中,首次使用Co29Cr9W3Cu颗粒作为研究模型,以Co29Cr9W颗粒作为对照组,探讨Co29Cr9W3Cu颗粒在体外和体内对炎症反应及破骨细胞活化的反应。体外研究表明,Co29Cr9W3Cu颗粒可促进M2表型巨噬细胞的生成并增加抗炎因子IL-10的表达水平,同时抑制M1表型巨噬细胞的形成并下调炎症因子TNF-α、IL-6和IL-1β的表达;更重要的是,Co29Cr9W3Cu颗粒降低了NF-κB及下游破骨细胞相关特异性转录标记基因(如TRAP、NFATc1和组织蛋白酶K)的表达;体内结果表明,暴露于小鼠颅骨的Co29Cr9W3Cu颗粒有助于减少破骨细胞数量和骨溶解面积。这些发现共同表明,含铜钴铬合金可能会潜在延缓磨损颗粒诱导的无菌性假体松动的发展,有望为Co29Cr9W3Cu合金作为具有抗磨损相关骨溶解的关节植入物替代材料提供证据。

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