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径向体外冲击波通过激活 Piezo1/CaMKII/CREB 轴促进老年骨质疏松骨髓基质细胞的成骨-血管生成偶联。

Radial extracorporeal shockwave promotes osteogenesis-angiogenesis coupling of bone marrow stromal cells from senile osteoporosis via activating the Piezo1/CaMKII/CREB axis.

机构信息

Department of Rehabilitation, Zhujiang Hospital, Southern Medical University, Guangzhou 510282, China; Department of Rehabilitation, Wuhan No. 1 Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430030, China.

Department of Orthopedics, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430030, China.

出版信息

Bone. 2024 Oct;187:117196. doi: 10.1016/j.bone.2024.117196. Epub 2024 Jul 14.

Abstract

Radial extracorporeal shockwave (r-ESW) and bone marrow stromal cells (BMSCs) have been reported to alleviate senile osteoporosis (SOP), but its regulatory mechanism remains unclear. In this study, we firstly isolated human BMSCs from bone marrow samples and treated with varying r-ESW doses. And we found that r-ESW could enhance the proliferation of SOP-BMSCs in a dose-dependent manner by EdU assay. Subsequently, the impact of r-ESW on the proliferation, apoptosis and multipotency of BMSCs was assessed. And the outcomes of flow cytometry, Alizarin red S (ARS), and tube formation test demonstrated that the optimal shockwave obviously boosted SOP-BMSCs osteogenesis and angiogenesis but exhibited no significant impact on cell apoptosis. Additionally, the signaling of Piezo1 and CaMKII/CREB was examined by Western blotting, qPCR and immunofluorescence. And the results showed that r-ESW promoted the expression of Piezo1, increased intracellular Ca and activated the CaMKII/CREB signaling pathway. Then, the application of Piezo1 siRNA hindered the r-ESW-induced enhancement ability of osteogenesis coupling with angiogenesis of SOP-BMSCs. The use of the CaMKII/CREB signaling pathway inhibitor KN93 suppressed the Piezo1-induced increase in osteogenesis and angiogenesis in SOP-BMSCs. Finally, we also found that r-ESW might alleviate SOP in the senescence-accelerated mouse prone 6 (SAMP6) model by activating Piezo1. In conclusion, our research offers experimental evidence and an elucidated underlying molecular mechanism to support the use of r-ESW as a credible rehabilitative treatment for senile osteoporosis.

摘要

径向体外冲击波(r-ESW)和骨髓基质细胞(BMSCs)已被报道可缓解老年性骨质疏松症(SOP),但其调节机制尚不清楚。在本研究中,我们首先从骨髓样本中分离出人 BMSCs,并以不同的 r-ESW 剂量进行处理。我们发现,r-ESW 通过 EdU 检测可剂量依赖性地增强 SOP-BMSCs 的增殖。随后,评估了 r-ESW 对 BMSCs 增殖、凋亡和多能性的影响。流式细胞术、茜素红 S(ARS)和管形成试验的结果表明,最佳冲击波明显增强了 SOP-BMSCs 的成骨和成血管作用,但对细胞凋亡没有显著影响。此外,通过 Western blot、qPCR 和免疫荧光检测 Piezo1 和 CaMKII/CREB 的信号。结果表明,r-ESW 促进了 Piezo1 的表达,增加了细胞内 Ca2+并激活了 CaMKII/CREB 信号通路。然后,应用 Piezo1 siRNA 阻碍了 r-ESW 诱导的 SOP-BMSCs 成骨和成血管耦联增强能力。使用 CaMKII/CREB 信号通路抑制剂 KN93 抑制了 Piezo1 诱导的 SOP-BMSCs 成骨和成血管增加。最后,我们还发现 r-ESW 通过激活 Piezo1 可能缓解衰老加速小鼠 prone 6 (SAMP6) 模型中的 SOP。总之,我们的研究为 r-ESW 作为老年性骨质疏松症可信的康复治疗方法提供了实验证据和阐明的潜在分子机制。

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