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IKK/NF-κB 和 ROS 信号轴参与了桃叶珊瑚苷 H 对 LPS 诱导的炎性骨溶解的抑制作用。

IKK/NF-κB and ROS signal axes are involved in Tenacissoside H mediated inhibitory effects on LPS-induced inflammatory osteolysis.

机构信息

Guangxi Key Laboratory of Regenerative Medicine, Orthopaedic Department, The First Affiliated Hospital of Guangxi Medical University, Nanning, Guangxi, China.

Collaborative Innovation Centre of Regenerative Medicine and Medical BioResource Development and Application Co-constructed by the Province and Ministry, Life Sciences Institute, Guangxi Medical University, Nanning, Guangxi, China.

出版信息

Cell Prolif. 2024 Jan;57(1):e13535. doi: 10.1111/cpr.13535. Epub 2023 Aug 8.

Abstract

Periodontal disease and arthroplasty prosthesis loosening and destabilization are both associated with osteolysis, which is predominantly caused by abnormal bone resorption triggered by pro-inflammatory cytokines. Osteoclasts (OCs) are critical players in the process. Concerns regarding the long-term efficacy and side effects of current frontline therapies, however, remain. Alternative therapies are still required. The aim of this work was to investigate the involvement of Tenacissoside H (TDH) in RANKL-mediated OC differentiation, as well as inflammatory osteolysis and associated processes. In vitro, bone marrow-derived macrophages (BMMs) cultured with RANKL and M-CSF were used to detect TDH in the differentiation and function of OCs. Real-time quantitative PCR was used to measure the expression of specific genes and inflammatory factors in OCs. Western blot was used to identify NFATc1, IKK, NF-κB, MAPK pathway, and oxidative stress-related components. Finally, an LPS-mediated calvarial osteolysis mouse model was employed to explore TDH's role in inflammatory osteolysis. The results showed that in vivo TDH inhibited the differentiation and resorption functions of OCs and down-regulated the transcription of osteoclast-specific genes, as well as Il-1β, Il-6 and Tnf-α. In addition, TDH inhibited the IKK and NF-κB signalling pathways and down-regulated the level of ROS. In vivo studies revealed that TDH improves the bone loss caused by LPS. TDH may be a new candidate or treatment for osteoclast-associated inflammatory osteolytic disease.

摘要

牙周病和关节置换假体松动和不稳定都与骨溶解有关,而骨溶解主要是由促炎细胞因子触发的异常骨吸收引起的。破骨细胞(OCs)是该过程中的关键参与者。然而,人们仍然对当前一线治疗的长期疗效和副作用存在担忧。因此,仍然需要替代疗法。本研究旨在探讨田七皂苷 H(TDH)在 RANKL 介导的 OC 分化、炎性骨溶解及相关过程中的作用。在体外,用 RANKL 和 M-CSF 培养骨髓来源的巨噬细胞(BMMs),以检测 TDH 在 OC 分化和功能中的作用。实时定量 PCR 用于检测 OC 中特定基因和炎症因子的表达。Western blot 用于鉴定 NFATc1、IKK、NF-κB、MAPK 通路和氧化应激相关成分。最后,采用 LPS 介导的颅骨骨溶解小鼠模型探讨 TDH 在炎性骨溶解中的作用。结果表明,体内 TDH 抑制 OC 的分化和吸收功能,并下调破骨细胞特异性基因以及 Il-1β、Il-6 和 Tnf-α的转录。此外,TDH 抑制 IKK 和 NF-κB 信号通路,并下调 ROS 水平。体内研究表明,TDH 可改善 LPS 引起的骨丢失。TDH 可能是一种新的治疗骨吸收相关炎性骨溶解疾病的候选药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3753/10771108/b1341d4afb9b/CPR-57-e13535-g005.jpg

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