Chen Chun-Yuan, Du Wei, Rao Shan-Shan, Tan Yi-Juan, Hu Xiong-Ke, Luo Ming-Jie, Ou Qi-Feng, Wu Pan-Feng, Qing Li-Ming, Cao Zhe-Ming, Yin Hao, Yue Tao, Zhan Chao-Hong, Huang Jie, Zhang Yan, Liu Yi-Wei, Wang Zhen-Xing, Liu Zheng-Zhao, Cao Jia, Liu Jiang-Hua, Hong Chun-Gu, He Ze-Hui, Yang Jun-Xiao, Tang Si-Yuan, Tang Ju-Yu, Xie Hui
Department of Orthopedics, Xiangya Hospital, Central South University, Changsha, Hunan 410008, China; Movement System Injury and Repair Research Center, Xiangya Hospital, Central South University, Changsha, Hunan 410008, China.
Department of Orthopedics, Xiangya Hospital, Central South University, Changsha, Hunan 410008, China; Movement System Injury and Repair Research Center, Xiangya Hospital, Central South University, Changsha, Hunan 410008, China; Department of Hand & Microsurgery, Xiangya Hospital, Central South University, Changsha, Hunan 410008, China; Department of Rehabilitation, Xiangya Hospital, Central South University, Changsha, Hunan 410008, China.
Acta Biomater. 2020 Jul 15;111:208-220. doi: 10.1016/j.actbio.2020.05.020. Epub 2020 May 22.
Osteonecrosis of the femoral head (ONFH) frequently occurs after glucocorticoid (GC) treatment. Extracellular vesicles (EVs) are important nano-sized paracrine mediators of intercellular crosstalk. This study aimed to determine whether EVs from human urine-derived stem cells (USC-EVs) could protect against GC-induced ONFH and focused on the impacts of USC-EVs on angiogenesis and apoptosis to explore the mechanism by which USC-EVs attenuated GC-induced ONFH. The results in vivo showed that the intravenous administration of USC-EVs at the early stage of GC exposure could rescue angiogenesis impairment, reduce apoptosis of trabecular bone and marrow cells, prevent trabecular bone destruction and improve bone microarchitecture in the femoral heads of rats. In vitro, USC-EVs reversed the GC-induced suppression of endothelial angiogenesis and activation of apoptosis. Deleted in malignant brain tumors 1 (DMBT1) and tissue inhibitor of metalloproteinases 1 (TIMP1) proteins were enriched in USC-EVs and essential for the USC-EVs-induced pro-angiogenic and anti-apoptotic effects in GC-treated cells, respectively. Knockdown of TIMP1 attenuated the protective effects of USC-EVs against GC-induced ONFH. Our study suggests that USC-EVs are a promising nano-sized agent for the prevention of GC-induced ONFH by delivering pro-angiogenic DMBT1 and anti-apoptotic TIMP1. STATEMENT OF SIGNIFICANCE: This study demonstrates that the intravenous injection of extracellular vesicles from human urine-derived stem cells (USC-EVs) at the early stage of glucocorticoid (GC) exposure efficiently protects the rats from the GC-induced osteonecrosis of the femoral head (ONFH). Moreover, this study identifies that the promotion of angiogenesis and inhibition of apoptosis by transferring pro-angiogenic DMBT1 and anti-apoptotic TIMP1 proteins contribute importantly to the USC-EVs-induced protective effects against GC-induced ONFH. This study suggests the promising prospect of USC-EVs as a new nano-sized agent for protecting against GC-induced ONFH, and the potential of DMBT1 and TIMP1 as the molecular targets for further augmenting the protective function of USC-EVs.
糖皮质激素(GC)治疗后股骨头坏死(ONFH)经常发生。细胞外囊泡(EVs)是细胞间通讯中重要的纳米级旁分泌介质。本研究旨在确定人尿源干细胞外囊泡(USC-EVs)是否能预防GC诱导的ONFH,并聚焦于USC-EVs对血管生成和细胞凋亡的影响,以探索USC-EVs减轻GC诱导的ONFH的机制。体内结果显示,在GC暴露早期静脉注射USC-EVs可挽救血管生成损伤,减少小梁骨和骨髓细胞凋亡,防止小梁骨破坏,并改善大鼠股骨头的骨微结构。在体外,USC-EVs逆转了GC诱导的内皮血管生成抑制和细胞凋亡激活。恶性脑肿瘤缺失1(DMBT1)和金属蛋白酶组织抑制剂1(TIMP1)蛋白在USC-EVs中富集,分别对USC-EVs诱导的GC处理细胞的促血管生成和抗凋亡作用至关重要。敲低TIMP1可减弱USC-EVs对GC诱导的ONFH的保护作用。我们的研究表明,USC-EVs是一种有前景的纳米级药物,可通过递送促血管生成的DMBT1和抗凋亡的TIMP1来预防GC诱导的ONFH。重要性声明:本研究表明,在糖皮质激素(GC)暴露早期静脉注射人尿源干细胞外囊泡(USC-EVs)可有效保护大鼠免受GC诱导的股骨头坏死(ONFH)。此外,本研究确定,通过转移促血管生成的DMBT1和抗凋亡的TIMP1蛋白促进血管生成和抑制细胞凋亡对USC-EVs诱导 的针对GC诱导的ONFH的保护作用有重要贡献。本研究表明,USC-EVs作为一种预防GC诱导的ONFH的新型纳米级药物具有广阔前景,并且DMBT1和TIMP1作为进一步增强USC-EVs保护功能的分子靶点具有潜力。