HDAC6/Trim21 aggravates macrophage inflammatory response and titanium-induced osteolysis via GSDMD signaling pathway.

IF 3.4 3区 医学 Q2 IMMUNOLOGY
Junxi Chen, Taihe Liu, Jiankai Luo, Zhipeng Chen, Yifan Yu, Haopeng Sun, Muyun Tan, Yujun Sun, Shixun Li, Changchuan Li, Yue Ding
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引用次数: 0

Abstract

Total joint arthroplasty is the optimal method for end-stage osteoarticular diseases, but aseptic loosening reduces long-term success. Our prior research demonstrated that wear particles released from loosened prostheses activate macrophages to secrete proinflammatory cytokines, thereby promoting osteoclast formation and osteolysis. Gasdermin D (GSDMD), a key regulator of pyroptosis, is a core step in the production of inflammatory factors after stimulation of macrophage pattern recognition receptors together with downstream inflammatory pathways, and histone deacetylase 6 (HDAC6)/tripartite motif-containing protein 21 (Trim21) is important in regulating activation. Yet, the specific mechanism of HDAC6/Trim21/GSDMD in wear particle-induced aseptic loosening (AL) requires further illustration. Our study will clarify the mechanism by demonstrating how HDAC6/Trim21 regulates GSDMD-associated signaling pathways in vivo and in vitro. Sterile titanium particles (TiPs) of 1.2 to 10.0 μm were co-incubated with RAW264.7 macrophages. HDAC6 selective inhibitor tubastatin A, HDAC6 overexpressing lentivirus, and Trim21 small interfering RNA were utilized to explore activation of proinflammatory pathways and polarization of macrophages was related. The mouse cranial osteolysis model was constructed to demonstrate HDAC6 regulating TiP-induced osteolysis. Macrophages were stimulated by TiPs to produce interleukin-1β as well as interferon γ, exhibiting M1 polarization. HDAC6 directedly interacted with Trim21, promoting the multiple proinflammatory responses mentioned above via GSDMD, STING pathway, and NLRP3 pathway. In vivo, HDAC6 provoked TiP-induced mice calvaria osteolysis and IL-1β production. HDAC6/Trim21 aggravates macrophage inflammatory response and titanium-induced osteolysis via GSDMD signaling pathway.

HDAC6/Trim21通过GSDMD信号通路加重巨噬细胞炎症反应和钛诱导的骨溶解。
全关节置换术是治疗终末期骨关节疾病的最佳方法,但无菌性松动降低了长期的成功。我们之前的研究表明,松动假体释放的磨损颗粒激活巨噬细胞分泌促炎细胞因子,从而促进破骨细胞的形成和骨溶解。Gasdermin D (GSDMD)是巨噬细胞模式识别受体与下游炎症通路刺激后产生炎症因子的关键调控因子,而组蛋白去乙酰化酶6 (HDAC6)/三方基元蛋白21 (Trim21)在调节其活化中起重要作用。然而,HDAC6/Trim21/GSDMD在磨损颗粒诱导的无菌性松动(AL)中的具体机制需要进一步阐明。我们的研究将通过展示HDAC6/Trim21如何在体内和体外调节gsdmd相关的信号通路来阐明其机制。1.2 ~ 10.0 μm的无菌钛颗粒(TiPs)与RAW264.7巨噬细胞共孵育。利用HDAC6选择性抑制剂tubastatin A、HDAC6过表达慢病毒、Trim21小干扰RNA研究促炎通路的激活与巨噬细胞极化的关系。建立小鼠颅骨骨溶解模型,证明HDAC6调节tip诱导的骨溶解。巨噬细胞被TiPs刺激产生白细胞介素-1β和干扰素γ,呈现M1极化。HDAC6直接与Trim21相互作用,通过GSDMD、STING途径和NLRP3途径促进上述多种促炎反应。在体内,HDAC6诱导了tip诱导的小鼠颅骨骨溶解和IL-1β的产生。HDAC6/Trim21通过GSDMD信号通路加重巨噬细胞炎症反应和钛诱导的骨溶解。
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来源期刊
Journal of immunology
Journal of immunology 医学-免疫学
CiteScore
8.20
自引率
2.30%
发文量
495
审稿时长
1 months
期刊介绍: The JI publishes novel, peer-reviewed findings in all areas of experimental immunology, including innate and adaptive immunity, inflammation, host defense, clinical immunology, autoimmunity and more. Special sections include Cutting Edge articles, Brief Reviews and Pillars of Immunology. The JI is published by The American Association of Immunologists (AAI)
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