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含铜生物活性玻璃陶瓷诱导抗炎表型及软骨/骨界面再生。

Copper-incorporated bioactive glass-ceramics inducing anti-inflammatory phenotype and regeneration of cartilage/bone interface.

作者信息

Lin Rongcai, Deng Cuijun, Li Xuxiang, Liu Yaqin, Zhang Meng, Qin Chen, Yao Qingqiang, Wang Liming, Wu Chengtie

机构信息

Department of Orthopaedics, Nanjing First Hospital, Nanjing Medical University. Nanjing 210006, P.R.China.

State Key Laboratory of High Performance Ceramics and Superfine Microstructure, Shanghai Institute of Ceramics, Chinese Academy of Sciences. Shanghai 200050, P.R.China.

出版信息

Theranostics. 2019 Aug 14;9(21):6300-6313. doi: 10.7150/thno.36120. eCollection 2019.

Abstract

Osteoarthritis not only results in cartilage lesion, but also is accompanied with subchondral bone damage caused by the inflammatory response. It is of great significance to treat osteoarthritis by regulating the immune response. As copper (Cu) plays an essential role in immune response and anti-arthritis, a copper-incorporated bioactive glass-ceramics (Cu-BGC) may achieve the aim of healing cartilage lesion and reducing inflammatory response caused by osteoarthritis. We hypothesized that the Cu released from Cu-BGC scaffolds may satisfy the requirements of cartilage regeneration and anti-arthritis. : 3D-printing method was employed to prepare Cu-BGC scaffolds. The stimulating effect on the chondrocytes and macrophages cultured with Cu-BGC extracts was investigated. Furthermore, the regenerative effect of Cu-BGC scaffolds on osteochondral defects was studied. : The incorporation of Cu into BGC considerably promoted the proliferation and maturation of chondrocytes, and induced macrophages shifting to anti-inflammatory phenotype. Histological analysis demonstrated that the Cu-BGC scaffolds meaningfully improved the regeneration of cartilage and elevated the recovery of the osteochondral interface as compared with the CTR and BGC groups. The potential mechanism is related to Cu ions triggering the immune response of cartilage via activating HIF signaling pathway and inhibiting the inflammatory response in osteochondral tissue. : These results demonstrated that Cu-BGC scaffolds significantly facilitated the regeneration of cartilage and osteochondral interface, as well as inhibited inflammatory response, which may prevent the development of osteoarthritis associated with osteochondral defects.

摘要

骨关节炎不仅会导致软骨损伤,还会伴随着由炎症反应引起的软骨下骨损伤。通过调节免疫反应来治疗骨关节炎具有重要意义。由于铜(Cu)在免疫反应和抗关节炎中起着至关重要的作用,一种含铜的生物活性玻璃陶瓷(Cu-BGC)可能实现治愈软骨损伤并减轻骨关节炎引起的炎症反应的目的。我们假设从Cu-BGC支架释放的铜可能满足软骨再生和抗关节炎的需求。采用3D打印方法制备Cu-BGC支架。研究了用Cu-BGC提取物培养对软骨细胞和巨噬细胞的刺激作用。此外,还研究了Cu-BGC支架对骨软骨缺损的再生作用。将铜掺入BGC中显著促进了软骨细胞的增殖和成熟,并诱导巨噬细胞转变为抗炎表型。组织学分析表明,与CTR组和BGC组相比,Cu-BGC支架显著改善了软骨再生并提高了骨软骨界面的恢复。潜在机制与铜离子通过激活HIF信号通路触发软骨的免疫反应并抑制骨软骨组织中的炎症反应有关。这些结果表明,Cu-BGC支架显著促进了软骨和骨软骨界面的再生,并抑制了炎症反应,这可能预防与骨软骨缺损相关的骨关节炎的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b124/6735521/8f462791f636/thnov09p6300g001.jpg

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