外泌体 miR-335 来源于成熟树突状细胞,增强了骨髓间充质干细胞介导的裸鼠骨缺损骨再生。
Exosomal miR-335 derived from mature dendritic cells enhanced mesenchymal stem cell-mediated bone regeneration of bone defects in athymic rats.
机构信息
Department of Rehabilitation Medicine, The Second Affiliated Hospital of Nanchang University, No. 1 Minde Road, Nanchang, 330006, China.
出版信息
Mol Med. 2021 Feb 26;27(1):20. doi: 10.1186/s10020-021-00268-5.
BACKGROUND
Transplantation of bone marrow-derived mesenchymal stem cells (BM-MSCs) embedded in a bio-compatible matrix has been demonstrated as a promising strategy for the treatment of bone defects. This study was designed to explore the effect and mechanism of exosomes derived from mature dendritic cells (mDC-Exo) on the BM-MSCs-mediated bone regeneration using the matrix support in an athymic rat model of femoral bone defect.
METHODS
The BM-MSCs were isolated from rats and incubated with osteoblast induction medium, exosomes derived from immature DCs (imDC-Exo), mDC-Exo, and miR-335-deficient mDC-Exo. BM-MSCs treated without or with mDC-Exo were embedded in a bio-compatible matrix (Orthoss) and then implanted into the femoral bone defect of athymic rats.
RESULTS
mDC-Exo promoted the proliferation and osteogenic differentiation of BM-MSCs by transferring miR-335. Mechanistically, exosomal miR-335 inhibited Hippo signaling by targeting large tongue suppressor kinase 1 (LATS1) and thus promoted the proliferation and osteogenic differentiation of BM-MSCs. Animal experiments showed that mDC-Exo enhanced BM-MSCs-mediated bone regeneration after bone defect, and this effect was abrogated when miR-335 expression was inhibited in mDC-Exo.
CONCLUSION
mDC-Exo promoted osteogenic differentiation of BM-MSCs and enhanced BM-MSCs-mediated bone regeneration after femoral bone defect in athymic rats by transferring miR-335.
背景
骨髓间充质干细胞(BM-MSCs)嵌入生物相容性基质中的移植已被证明是治疗骨缺损的一种有前途的策略。本研究旨在探讨成熟树突状细胞(mDC-Exo)来源的外泌体在基质支持下对 BM-MSCs 介导的骨再生的作用和机制,采用无胸腺大鼠股骨骨缺损模型。
方法
从大鼠中分离 BM-MSCs 并与成骨诱导培养基、未成熟 DC 来源的外泌体(imDC-Exo)、mDC-Exo 和 miR-335 缺陷型 mDC-Exo 孵育。未经 mDC-Exo 处理或经 mDC-Exo 处理的 BM-MSCs 嵌入生物相容性基质(Orthoss)中,然后植入无胸腺大鼠股骨骨缺损部位。
结果
mDC-Exo 通过转移 miR-335 促进 BM-MSCs 的增殖和成骨分化。机制上,外泌体 miR-335 通过靶向大舌抑制激酶 1(LATS1)抑制 Hippo 信号通路,从而促进 BM-MSCs 的增殖和成骨分化。动物实验表明,mDC-Exo 增强了骨缺损后 BM-MSCs 介导的骨再生,而当 mDC-Exo 中 miR-335 的表达受到抑制时,这种作用被阻断。
结论
mDC-Exo 通过转移 miR-335 促进 BM-MSCs 的成骨分化,并增强无胸腺大鼠股骨骨缺损后 BM-MSCs 介导的骨再生。