生物
细胞凋亡
标记法
免疫组织化学
巨噬细胞
M2巨噬细胞
细胞生物学
癌症研究
病理
免疫学
医学
生物化学
体外
作者
Xiaochuan Li,Wei Wang,Cheng Jiang,Yonglong Chen,J F Chen,Zhenwu Zhang,Shao‐Jian Luo,Rongchun Chen,Ping-Fan Mo,Mingliang Zhong,Jiangyou Shi,Chun‐Ming Huang,Qin Chen,Yaohong Wu
标识
DOI:10.1016/j.joca.2023.09.010
摘要
Objective This study aimed to explore the specific function of M2 macrophages in intervertebral disc degeneration (IDD). Methods Intervertebral disc (IVD) samples from normal (n = 4) and IDD (n = 6) patients were collected, and the expression of M2-polarized macrophage marker, CD206, was investigated using immunohistochemical staining. Nucleus pulposus cells (NPCs) in a TNF-α environment were obtained, and a mouse caudal IVD puncture model was established. Mice with Rheb deletions, specifically in the myeloid lineage, were generated and subjected to surgery-induced IDD. IDD-induced damage and cell apoptosis were measured using histological scoring, X-ray imaging, immunohistochemical staining, and TdT-mediated dUTP nick end labeling (TUNEL) assay. Finally, mice and NPCs were treated with R-spondin-2 (Rspo2) or anti-Rspo2 to investigate the role of Rspo2 in IDD. Results Accumulation of CD206 in human and mouse IDD tissues was detected. Rheb deletion in the myeloid lineage (RheBcKO) increased the number of CD206+ M2-like macrophages (mean difference 18.6% [15.7–21.6%], P < 0.001), decreased cell apoptosis (mean difference −15.6% [−8.9 to 22.2%], P = 0.001) and attenuated the IDD process in the mouse IDD model. NPCs treated with Rspo2 displayed increased extracellular matrix catabolism and apoptosis; co-culture with a conditioned medium derived from RheBcKO mice inhibited these changes. Anti-Rspo2 treatment in the mouse caudal IVD puncture model exerted protective effects against IDD. Conclusions Promoting CD206+ M2-like macrophages could reduce Rspo2 secretion, thereby alleviating experimental IDD. Rheb deletion may help M2-polarized macrophages accumulate and attenuate experimental IDD partially by inhibiting Rspo2 production. Hence, M2-polarized macrophages and Rspo2 may serve as therapeutic targets for IDD.
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