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Rac1活性的药理学抑制可预防病理性钙化并增强肌腱再生。

Pharmacological Inhibition of Rac1 Activity Prevents Pathological Calcification and Enhances Tendon Regeneration.

作者信息

Yang Long, Tang Chenqi, Chen Yangwu, Ruan Dengfeng, Zhang Erchen, Yin Zi, Chen Xiao, Jiang Yangzi, Cai Youzhi, Fei Yang, Zhu Shouan, Liu Huanhuan, Hu Jiajie, Heng Boon Chin, Chen Weishan, Shen Weiliang, Ouyang Hongwei

机构信息

Dr. Li Dak Sum & Yip Yio Chin Center for Stem Cells and Regenerative Medicine, School of Medicine, Zhejiang University, Hangzhou, China.

Key Laboratory of Tissue Engineering and Regenerative Medicine of Zhejiang Province, School of Medicine, Zhejiang University, Hangzhou, China.

出版信息

ACS Biomater Sci Eng. 2019 Jul 8;5(7):3511-3522. doi: 10.1021/acsbiomaterials.9b00335. Epub 2019 Jun 7.

Abstract

Tendinopathy is a common disease, which is characterized by pain, swelling, and dysfunction. At the late stage of tendinopathy, pathological changes may occur, such as tendon calcification. Previously, we have shown that tendon stem/progenitor cells (TSPCs) underwent osteogenesis in the inflammatory niche in diseased tendons. In this study, we demonstrate that this process is accompanied by the activation of Ras-related C3 botulinum toxin substrate 1 (Rac1) signaling. A specific inhibitor NSC23766 significantly downregulated catabolic factors and calcification-related genes and rescued the tenogenesis gene expression of TSPCs under the influence of Interleukin (IL)-1β in vitro. For evaluation, we further developed a drug delivery system to encapsulate Rac1 inhibitor NSC23766. Chitosan/β-glycerophosphate hydrogel encapsulated NSC23766 effectively impeded tendon calcification and enhanced tendon regeneration in rat Achilles tendinosis. Our findings indicated that inhibiting Rac1 signaling could act as an effective intervention for tendon pathological calcification and promote tendon regeneration, thus providing a new therapeutic strategy.

摘要

肌腱病是一种常见疾病,其特征为疼痛、肿胀和功能障碍。在肌腱病晚期,可能会出现病理变化,如肌腱钙化。此前,我们已经表明,肌腱干/祖细胞(TSPCs)在患病肌腱的炎性微环境中会发生成骨作用。在本研究中,我们证明这一过程伴随着Ras相关C3肉毒杆菌毒素底物1(Rac1)信号通路的激活。一种特异性抑制剂NSC23766在体外可显著下调分解代谢因子和钙化相关基因,并在白细胞介素(IL)-1β的影响下挽救TSPCs的成腱基因表达。为了进行评估,我们进一步开发了一种药物递送系统来封装Rac1抑制剂NSC23766。壳聚糖/β-甘油磷酸盐水凝胶封装的NSC23766有效抑制了大鼠跟腱病中的肌腱钙化并促进了肌腱再生。我们的研究结果表明,抑制Rac1信号通路可作为肌腱病理性钙化的有效干预措施并促进肌腱再生,从而提供一种新的治疗策略。

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