Huang Peina, Xu Jieyun, Xie Lv, Gao Guangqi, Chen Shoucheng, Gong Zhuohong, Lao Xiaomei, Shan Zhengjie, Shi Jiamin, Zhou Zhaocai, Chen Zhuofan, Cao Yang, Wang Yan, Chen Zetao
Hospital of Stomatology, Guanghua School of Stomatology, Sun Yat-sen University and Guangdong Provincial Key Laboratory of Stomatology, No.56, Lingyuan West Road, Yuexiu District, Guangzhou, 510055, China.
Bioact Mater. 2022 May 18;20:42-52. doi: 10.1016/j.bioactmat.2022.05.013. eCollection 2023 Feb.
Soft tissue integration is one major difficulty in the wide applications of metal materials in soft tissue-related areas. The inevitable inflammatory response and subsequent fibrous reaction toward the metal implant is one key response for metal implant-soft tissue integration. It is of great importance to modulate this inflammatory-fibrous response, which is mainly mediated by the multidirectional interaction between fibroblasts and macrophages. In this study, macrophages are induced to generate M1 and M2 macrophage immune microenvironments. Their cytokine profiles have been proven to have potentially multi-regulatory effects on fibroblasts. The multi-reparative effects of soft tissue cells (human gingival fibroblasts) cultured on metal material (titanium alloy disks) in M1 and M2 immune microenvironments are then dissected. Fibroblasts in the M1 immune microenvironment tend to aggravate the inflammatory response in a pro-inflammatory positive feedback loop, while M2 immune microenvironment enhances multiple functions of fibroblasts in soft tissue integration, including soft tissue regeneration, cell adhesion on materials, and contraction to immobilize soft tissue. Enlighted by the close interaction between macrophages and fibroblasts, we propose the concept of an "inflammatory-fibrous complex" to disclose possible methods of precisely and effectively modulating inflammatory and fibrous responses, thus advancing the development of metal soft tissue materials.
软组织整合是金属材料在软组织相关领域广泛应用中的一个主要难题。金属植入物引发的不可避免的炎症反应以及随后对其的纤维反应是金属植入物与软组织整合的关键反应。调节这种炎症 - 纤维反应非常重要,这种反应主要由成纤维细胞和巨噬细胞之间的多向相互作用介导。在本研究中,诱导巨噬细胞产生M1和M2巨噬细胞免疫微环境。已证明它们的细胞因子谱对成纤维细胞具有潜在的多调节作用。然后剖析在M1和M2免疫微环境中培养于金属材料(钛合金圆盘)上的软组织细胞(人牙龈成纤维细胞)的多重修复作用。M1免疫微环境中的成纤维细胞倾向于在促炎正反馈回路中加剧炎症反应,而M2免疫微环境增强成纤维细胞在软组织整合中的多种功能,包括软组织再生、细胞在材料上的粘附以及收缩以固定软组织。受巨噬细胞和成纤维细胞之间紧密相互作用的启发,我们提出“炎症 - 纤维复合体”的概念,以揭示精确有效调节炎症和纤维反应的可能方法,从而推动金属软组织材料的发展。