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Bushenhuoxue Formula Facilitates Articular Cartilage Repair and Attenuates Matrix Degradation by Activation of TGF-β Signaling Pathway

机译:补肾活血配方通过激活TGF-β信号通路促进关节软骨修复并减轻基质降解

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Objective. To investigate the effect and underlying mechanism of Bushenhuoxue (BSHX) formula on articular cartilage repair. Methods. Twenty-four full-thickness cartilage defect rats were divided into two groups model group and BSHX group (treated with BSHX formula). Macroscopic observation and histopathological study were conducted after 4- and 8-week treatment. Additionally, we also evaluated chondrocyte proliferation, extracellular matrix (ECM) deposition, cartilage degradation, and chondrocyte hypertrophy-related genes expression in chondrogenic ATDC5 cells cultured in BSHX formula-mediated serum. Moreover, we assessed aforementioned genes expression and pSMAD2/3 protein level in Tgfβr2 siRNA transfected chondrogenic ATDC5 cells in order to address whether BSHX formula exerts cartilage repairing effect through TGF-β signaling. Results. Neocartilage regeneration promotion effect was observed in cartilage defect rats after BSHX formula treatment, with increases in Col2 and pSMAD2 and decreases in Mmp13 and Runx2. Moreover, cell proliferation, the elevated Col2a1, Aggrecan and pSMAD2/3, reduced Mmp13, Adamts5, Col10a1, and Runx2 expression were also observed in chondrogenic ATDC5 cells cultured in BSHX formula-mediated serum. Besides, the expression alteration of ECM deposition, cartilage degradation, chondrocyte hypertrophy-related genes, and pSMAD2/3 protein levels presented in Tgfβr2 downregulated chondrogenic ATDC5 cells couldn’t be adjusted by BSHX formula treatment. Conclusion. By activation of TGF-β signaling, BSHX formula can promote articular cartilage repair by accelerating chondrocyte proliferation and maintaining chondrocyte phenotype, upregulate ECM accumulation, and inhibit matrix degradation.
机译:目的。探讨补肾活血(BSHX)配方对关节软骨修复的作用及其潜在机制。方法。将24只全层软骨缺损大鼠分为模型组和BSHX组(用BSHX配方治疗)。治疗4、8周后进行肉眼观察和组织病理学研究。此外,我们还评估了在BSHX公式介导的血清中培养的成软骨ATDC5细胞中的软骨细胞增殖,细胞外基质(ECM)沉积,软骨降解和软骨细胞肥大相关基因的表达。此外,我们评估了上述基因在Tgfβr2siRNA转染的成软骨ATDC5细胞中的表达和pSMAD2 / 3蛋白水平,以解决BSHX配方是否通过TGF-β信号传导发挥软骨修复作用。结果。 BSHX公式处理后,在软骨缺损大鼠中观察到新软骨再生促进作用,其中Col2和pSMAD2增加,Mmp13和Runx2减少。此外,在BSHX配方介导的血清中培养的成软骨ATDC5细胞中也观察到了细胞增殖,Col2a1,Aggrecan和pSMAD2 / 3升高,Mmp13,Adamts5,Col10a1和Runx2表达降低。此外,BSHX配方处理无法调节Tgfβr2下调软骨性ATDC5细胞中ECM沉积,软骨降解,软骨细胞肥大相关基因和pSMAD2 / 3蛋白表达的表达变化。结论。通过激活TGF-β信号,BSHX配方可通过加速软骨细胞增殖和维持软骨细胞表型,上调ECM积累并抑制基质降解来促进关节软骨修复。

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