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首页> 外文期刊>Journal of tissue engineering and regenerative medicine >Immunoregulatory role of exosomes derived from differentiating mesenchymal stromal cells on inflammation and osteogenesis
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Immunoregulatory role of exosomes derived from differentiating mesenchymal stromal cells on inflammation and osteogenesis

机译:外泌体衍生自分化间充质基质细胞对炎症和骨质发生的免疫调节作用

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Bone marrow-derived mesenchymal stem/stromal cells (BMSCs) can differentiate into bone-forming osteoblasts, playing a crucial role in bone regeneration. Exosomes are naturally cell-secreted nanovesicles and are lately regraded as an emerging mediator of cellular communication in physiological and pathological conditions. The present study aimed at investigating the complex cellular communications, especially those among the differentiating BMSCs, immune cells (e.g., macrophages), and newly recruited BMSCs via exosome-mediated pathways. Exosomes were first isolated from osteogenically differentiating BMSCs at various stages (Day 0, Day 3, Day 7, and Day 14, respectively). The cellular uptake of isolated exosomes was examined in macrophages and human BMSCs (hBMSCs). The exosomes collected at various osteogenic differentiation stages (0d-exo, 3d-exo, 7d-exo, and 14d-exo) had no effect on the viability of hBMSCs. The uptake of exosomes (0d-exo, 3d-exo, and 7d-exo) significantly decreased proinflammatory-gene expression and the level of an M1 phenotypic marker. Our results then revealed that 3d-exo, 7d-exo, and 14d-exo led to a remarkable increase in mesenchymal stem/stromal cell migration. In addition, 0d-exo significantly promoted the expression of early osteogenic markers, such as alkaline phosphatase and bone morphogenetic protein 2, indicating a pro-osteogenic role of hBMSC-derived exosomes. Collectively, these results suggest that exosomes derived from differentiating mesenchymal stem/stromal cells play a unique osteoimmunomodulatory role in the regulation of bone dynamics.
机译:骨髓衍生的间充质茎/基质细胞(BMSCs)可以分化为骨形成的成骨细胞,在骨再生中发挥着关键作用。外泌体是天然细胞分泌的纳米粒子,并且最近被重新成为生理和病理条件下的细胞通信的新出现介质。目前研究旨在研究复杂的细胞通信,尤其是通过外介质介导的途径进行分化的BMSCs,免疫细胞(例如,巨噬细胞)和新招募的BMSC。首先将外泌体与分离的分离的BMSC分离在各个阶段(分别为0天,第3天,第7天和第14天)。在巨噬细胞和人BMSC(HBMSCs)中检测分离出外泌体的细胞吸收。在各种成骨分化阶段(0d-EXO,3D-EXO,7D-EXO和14D-EXO)收集的外索体对HBMSCs的活力没有影响。外泌体(0D-EXO,3D-EXO和7D-EXO)的摄取显着降低了促炎基因表达和M1表型标志物的水平。我们的结果揭示了3D-EXO,7D-EXO和14D-EXO导致间充质茎/基质细胞迁移显着增加。此外,0D-EXO显着促进了早期骨质发生标志物的表达,例如碱性磷酸酶和骨形态发生蛋白2,表明HBMSC衍生的外泌体的促求作用作用。总的来说,这些结果表明,衍生自分化间充质茎/基质细胞的外索物在骨动力学调节中起着独特的骨瘤瘤组作用。

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