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具有干细胞衍生基质的节段性脱矿皮质骨促进干细胞的增殖、迁移和分化。

Segmentally Demineralized Cortical Bone With Stem Cell-Derived Matrix Promotes Proliferation, Migration and Differentiation of Stem Cells .

作者信息

He Shu-Kun, Ning Liang-Ju, Hu Ruo-Nan, Yao Xuan, Cui Jing, Ding Wei, Luo Jing-Cong, Qin Ting-Wu

机构信息

Laboratory of Stem Cell and Tissue Engineering, State Key Laboratory of Biotherapy, West China Hospital, Orthopedic Research Institute, Sichuan University, Chengdu, China.

Department of Orthopedics, West China Hospital, Orthopedic Research Institute, Sichuan University, Chengdu, China.

出版信息

Front Cell Dev Biol. 2022 Jan 26;9:776884. doi: 10.3389/fcell.2021.776884. eCollection 2021.

Abstract

A recent study has shown that demineralized cortical bone (DCB) did not improve the healing of tendon-bone interface. Considering that there is a gradient of mineral content in the tendon-bone interface, we designed a segmentally demineralized cortical bone (sDCB) scaffold with two different regions: undemineralized cortical bone section within the scaffold (sDCB-B) and complete demineralized cortical bone section within the scaffold (sDCB-D), to mimic the natural structure of the tendon-bone interface. Furthermore, the extracellular matrix (ECM) from tendon-derived stem cells (TDSCs) was used to modify the sDCB-D region of sDCB to construct a novel scaffold (sDCB-ECM) for enhancing the bioactivity of the sDCB-D. The surface topography, elemental distribution, histological structure, and surface elastic modulus of the scaffold were observed using scanning electron microscopy, energy-dispersive X-ray spectroscopy, Fourier transform infrared spectroscopy, histological staining and atomic force microscopy. Cell proliferation of bone marrow mesenchymal stem cells (BMSCs) and TDSCs cultured on scaffolds was evaluated using the Cell Counting kit-8, and cell viability was assessed by Live/Dead cell staining. Cell morphology was detected by fluorescent staining. The ability of the scaffolds to recruit stem cells was tested using transwell migration assay. The expression levels of bone-, cartilage- and tendon-related genes and proteins in stem cells were assessed by the polymerase chain reaction and western blotting. Our results demonstrated that there was a gradient of Ca and P elements in sDCB, and TDSC-derived ECM existed on the surface of the sDCB-D region of sDCB. The sDCB-ECM could promote stem cell proliferation and migration. Moreover, the sDCB-B region of sDCB-ECM could stimulate osteogenic and chondrogenic differentiation of BMSCs, and the sDCB-D-ECM region of sDCB-ECM could stimulate chondrogenic and tenogenic differentiation of TDSCs when compared to DCB. Our study indicated that sDCB-ECM might be a potential bioscaffold to enhance the tendon-bone interface regeneration.

摘要

最近的一项研究表明,脱矿皮质骨(DCB)并不能改善肌腱-骨界面的愈合。考虑到肌腱-骨界面存在矿物质含量梯度,我们设计了一种分段脱矿皮质骨(sDCB)支架,其具有两个不同区域:支架内的未脱矿皮质骨部分(sDCB-B)和支架内的完全脱矿皮质骨部分(sDCB-D),以模拟肌腱-骨界面的自然结构。此外,来自肌腱衍生干细胞(TDSCs)的细胞外基质(ECM)被用于修饰sDCB的sDCB-D区域,以构建一种新型支架(sDCB-ECM),用于增强sDCB-D的生物活性。使用扫描电子显微镜、能量色散X射线光谱、傅里叶变换红外光谱、组织学染色和原子力显微镜观察支架的表面形貌、元素分布、组织结构和表面弹性模量。使用细胞计数试剂盒-8评估在支架上培养的骨髓间充质干细胞(BMSCs)和TDSCs的细胞增殖,并通过活/死细胞染色评估细胞活力。通过荧光染色检测细胞形态。使用transwell迁移试验测试支架募集干细胞的能力。通过聚合酶链反应和蛋白质印迹评估干细胞中骨、软骨和肌腱相关基因和蛋白质的表达水平。我们的结果表明,sDCB中存在Ca和P元素梯度,并且sDCB的sDCB-D区域表面存在TDSC衍生的ECM。sDCB-ECM可以促进干细胞增殖和迁移。此外,与DCB相比,sDCB-ECM的sDCB-B区域可以刺激BMSCs的成骨和软骨分化,而sDCB-ECM的sDCB-D-ECM区域可以刺激TDSCs的软骨和肌腱分化。我们的研究表明,sDCB-ECM可能是一种潜在的生物支架,可增强肌腱-骨界面再生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a0b/8826562/220aae1a5728/fcell-09-776884-g001.jpg

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