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人脐带间充质基质细胞衍生的细胞外囊泡通过 CLEC11A 介导的骨代谢调节发挥强大的骨保护作用。

Human umbilical cord mesenchymal stromal cells-derived extracellular vesicles exert potent bone protective effects by CLEC11A-mediated regulation of bone metabolism.

机构信息

Department of Orthopedics, Xiangya Hospital, Central South University, Changsha, Hunan 410008, China.

Department of Metabolism and Endocrinology, The First Affiliated Hospital, University of South China, Hengyang, Hunan 421001, China.

出版信息

Theranostics. 2020 Jan 16;10(5):2293-2308. doi: 10.7150/thno.39238. eCollection 2020.

Abstract

Osteoporosis and osteoporotic fractures severely compromise quality of life in elderly people and lead to early death. Human umbilical cord mesenchymal stromal cell (MSC)-derived extracellular vesicles (hucMSC-EVs) possess considerable therapeutic effects in tissue repair and regeneration. Thus, in the present study, we investigated the effects of hucMSC-EVs on primary and secondary osteoporosis and explored the underlying mechanisms. : hucMSCs were isolated and cultured. EVs were obtained from the conditioned medium of hucMSCs and determined by using transmission electron microscopy, dynamic light scattering and Western Blot analyses. The effects of hucMSC-EVs on ovariectomy-induced postmenopausal osteoporosis and tail suspension-induced hindlimb disuse osteoporosis in mouse models were assessed by using microcomputed tomography, biomechanical, histochemical and immunohistochemical, as well as histomorphometric analyses. Proteomic analysis was applied between hucMSC-EVs and hucMSCs to screen the candidate proteins that mediate hucMSC-EVs function. The effects of hucMSC-EVs on osteogenic and adipogenic differentiation of bone marrow mesenchymal stromal cells (BMSCs), and osteoclastogenesis of the macrophage cell line RAW264.7 were determined by using cytochemical staining and quantitative real-time PCR analysis. Subsequently, the roles of the key protein in hucMSC-EVs-induced regulation on BMSCs and RAW264.7 cells were evaluated. hucMSCs were able to differentiate into osteoblasts, adipocytes or chondrocytes and positively expressed CD29, CD44, CD73 and CD90, but negatively expressed CD34 and CD45. The morphological assessment revealed the typical cup- or sphere-shaped morphology of hucMSC-EVs with diameters predominantly ranging from 60 nm to 150 nm and expressed CD9, CD63, CD81 and TSG101. The systemic administration of hucMSC-EVs prevented bone loss and maintained bone strength in osteoporotic mice by enhancing bone formation, reducing marrow fat accumulation and decreasing bone resorption. Proteomic analysis showed that the potently pro-osteogenic protein, CLEC11A (C-type lectin domain family 11, member A) was very highly enriched in hucMSC-EVs. In addition, hucMSC-EVs enhanced the shift from adipogenic to osteogenic differentiation of BMSCs via delivering CLEC11A . Moreover, CLEC11A was required for the inhibitory effects of hucMSC-EVs on osteoclast formation. Our results suggest that hucMSC-EVs serve as a critical regulator of bone metabolism by transferring CLEC11A and may represent a potential agent for prevention and treatment of osteoporosis.

摘要

骨质疏松症和骨质疏松性骨折严重影响老年人的生活质量,并导致早亡。人脐带间充质基质细胞(MSC)衍生的细胞外囊泡(hucMSC-EVs)在组织修复和再生方面具有相当大的治疗作用。因此,在本研究中,我们研究了 hucMSC-EVs 对原发性和继发性骨质疏松症的影响,并探讨了其潜在机制。

从脐带中分离和培养 hucMSCs。通过透射电子显微镜、动态光散射和 Western Blot 分析从 hucMSC 的条件培养基中获得 EVs。通过 microCT、生物力学、组织化学和免疫组织化学以及组织形态计量学分析评估 hucMSC-EVs 对去卵巢诱导的绝经后骨质疏松症和尾部悬吊诱导的后肢废用性骨质疏松症小鼠模型的影响。应用蛋白质组学分析筛选介导 hucMSC-EVs 功能的候选蛋白。通过细胞化学染色和实时定量 PCR 分析,评估 hucMSC-EVs 对骨髓间充质基质细胞(BMSCs)成骨和脂肪分化以及巨噬细胞 RAW264.7 细胞破骨分化的影响。随后,评估了 hucMSC-EVs 诱导的 BMSCs 和 RAW264.7 细胞调节中关键蛋白的作用。

hucMSCs 能够分化为成骨细胞、脂肪细胞或软骨细胞,并阳性表达 CD29、CD44、CD73 和 CD90,但阴性表达 CD34 和 CD45。形态学评估显示 hucMSC-EVs 具有典型的杯状或球形形态,直径主要为 60nm 至 150nm,并表达 CD9、CD63、CD81 和 TSG101。系统给予 hucMSC-EVs 通过增强成骨、减少骨髓脂肪积累和减少骨吸收来预防骨质疏松症小鼠的骨丢失并维持骨强度。蛋白质组学分析表明,强效促成骨蛋白 CLEC11A(C 型凝集素结构域家族 11 成员 A)在 hucMSC-EVs 中高度富集。此外,hucMSC-EVs 通过传递 CLEC11A 增强 BMSCs 从脂肪向成骨分化的转变。此外,CLEC11A 是 hucMSC-EVs 抑制破骨细胞形成所必需的。

我们的结果表明,hucMSC-EVs 通过转移 CLEC11A 作为骨代谢的关键调节剂,并可能代表预防和治疗骨质疏松症的潜在药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e668/7019162/6e5f85d8a340/thnov10p2293g001.jpg

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