Acupotomy ameliorates subchondral bone absorption and mechanical properties in rabbits with knee osteoarthritis by regulating bone morphogenetic protein 2-Smad1 pathway.

Chen Xilin, Guo Yan, L U Juan, Qin Luxue, H U Tingyao, Zeng Xin, Wang Xinyue, Zhang Anran, Zhuang Yuxin, Zhong Honggang, Guo Changqing
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Abstract

Objective: To investigate the effects of acupotomy on the subchondral bone absorption and mechanical properties in rabbits with knee osteoarthritis (KOA).

Methods: The rabbits were divided into blank control, model, acupotomy and electroacupuncture (EA) groups, with 12 rabbits in each. Modified Videman's method was used to prepare KOA model. The acupotomy and EA group were given indicated intervention for 3 weeks. The behavior of rabbits in each group was recorded. Subsequently, cartilage-subchondral bone units were obtained and morphological changes were observed by optical microscope and micro computed tomography. Compression test was used to detect the mechanical properties of subchondral bone, Western blot and real-time polymerase chain reaction (RT-PCR) were applied to detect the expression of bone morphogenetic protein 2-Smad1 (BMP2-Smad1) pathway in subchondral bone.

Results: Compared with the control group, rabbits in the KOA group showed lameness, knee pain, and cartilage degradation; the subchondral bone showed active resorption, the mechanical properties decreased significantly and the BMP2-Smad1 pathway downregulated significantly. Both acupotomy and EA intervention could increase the thickness of trabecular bone (Tb. Th), the bone volume fraction (BV/TV) and the thickness of subchondral bone plate, reduce the separation of trabecular bone (Tb. Sp), improve the maximum load and elastic modulus of subchondral bone, and effectively delay cartilage degeneration in KOA rabbits. This process may be achieved through upregulation the related proteins of BMP2-Smad1 pathway. The maximum load and elastic modulus of subchondral bone in the acupotomy group were slightly better than those in the EA group.

Conclusions: Acupotomy could effectively protect cartilage by inhibiting abnormal bone resorption and improving mechanical properties of subchondral bone thorough the related proteins of BMP2-Smad1 pathway in KOA rabbits.

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通过调节骨形态发生蛋白 2-Smad1 通路,针刺术可改善兔膝关节骨关节炎患者软骨下骨的吸收和机械性能。
目的研究穴位切除术对膝关节骨关节炎(KOA)家兔软骨下骨吸收和力学性能的影响:将兔子分为空白对照组、模型组、穴位切除组和电针组(EA),每组 12 只。采用改良维德曼法制备 KOA 模型。穴位切除组和电针组接受指定干预3周。记录各组兔子的行为。随后获取软骨-软骨下骨单位,并通过光学显微镜和显微计算机断层扫描观察其形态变化。用压缩试验检测软骨下骨的力学性能,用 Western 印迹和实时聚合酶链反应(RT-PCR)检测骨形态发生蛋白 2-Smad1(BMP2-Smad1)通路在软骨下骨中的表达:结果:与对照组相比,KOA组兔子出现跛行、膝关节疼痛和软骨退化;软骨下骨出现主动吸收,力学性能显著下降,BMP2-Smad1通路显著下调。穴位切除和 EA 干预都能增加 KOA 兔小梁骨厚度(Tb. Th)、骨体积分数(BV/TV)和软骨下骨板厚度,减少小梁骨分离(Tb. Sp),提高软骨下骨的最大负荷和弹性模量,有效延缓软骨退化。这一过程可能是通过上调 BMP2-Smad1 通路的相关蛋白实现的。穴位切除组软骨下骨的最大负荷和弹性模量略优于 EA 组:结论:穴位切除术可通过抑制异常骨吸收,彻底改善 BMP2-Smad1 通路相关蛋白对 KOA 兔软骨下骨机械性能的影响,从而有效保护软骨。
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