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Differential Expression of Adhesion-Related Proteins and MAPK Pathways Lead to Suitable Osteoblast Differentiation of Human Mesenchymal Stem Cells Subpopulations

机译:粘附相关蛋白和MAPK途径的差异表达导致人间充质干细胞亚群的合适成骨细胞分化。

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摘要

Cellular adhesion enables communication between cells and their environment. Adhesion can be achieved throughout focal adhesions and its components influence osteoblast differentiation of human mesenchymal stem cells (hMSCs). Because cell adhesion and osteoblast differentiation are closely related, this article aimed to analyze the expression profiles of adhesion-related proteins during osteoblastic differentiation of two hMSCs subpopulations (CD105(+) and CD105(-)) and propose a strategy for assembling bone grafts based on its adhesion ability. In vitro experiments of osteogenic differentiation in CD105(-) cells showed superior adhesion efficiency and 2-fold increase of -actinin expression compared with CD105(+) cells at the maturation stage. Interestingly, levels of activated 1-integrin increased in CD105(-) cells during the process. Additionally, the CD105(-) subpopulation showed 3-fold increase of phosphorylated FAK(Y397) compared to CD105(+) cells. Results also indicate that ERK1/2 was activated during CD105(-) bone differentiation and participation of mitogen-activated protein kinase (MAPK)-p38 in CD105(+) differentiation through a focal adhesion kinase (FAK)-independent pathway. In vivo trial demonstrated that grafts containing CD105(-) showed osteocytes embedded in a mineralized matrix, promoted adequate graft integration, increased host vascular infiltration, and efficient intramembranous repairing. In contrast, grafts containing CD105(+) showed deficient endochondral ossification and fibrocartilaginous tissue. Based on the expression of -actinin, FAKy,(397) and ERK1/2 activation, we define maturation stage as critical for bone graft assembling. By in vitro assays, CD105(-) subpopulation showed superior adhesion efficiency compared to CD105(+) cells. Considering in vitro and in vivo assays, this study suggests that integration of a scaffold with CD105(-) subpopulation at the maturation stage represents an attractive strategy for clinical use in orthopedic bioengineering.
机译:细胞粘附使细胞与其环境之间能够进行通讯。粘附可以在整个粘着斑中实现,并且其成分影响人间充质干细胞(hMSCs)的成骨细胞分化。由于细胞粘附与成骨细胞分化密切相关,因此本文旨在分析两个hMSCs亚群(CD105(+)和CD105(-))在成骨细胞分化过程中粘附相关蛋白的表达谱,并提出基于该模型组装骨移植物的策略。附着力在成熟阶段,与CD105(+)细胞相比,CD105(-)细胞中成骨分化的体外实验显示出优异的粘附效率和-actinin表达的2倍增加。有趣的是,在此过程中,CD105(-)细胞中活化的1-integrin的水平增加了。此外,与CD105(+)细胞相比,CD105(-)亚群显示磷酸化FAK(Y397)的3倍增加。结果还表明,ERK1 / 2在CD105(-)骨分化过程中被激活,并且有丝分裂原激活的蛋白激酶(MAPK)-p38通过不依赖粘着斑激酶(FAK)的途径参与CD105(+)分化。体内试验表明,含有CD105(-)的移植物显示出骨细胞嵌入矿化的基质中,促进了充分的移植物整合,增加了宿主血管的浸润和有效的膜内修复。相反,含有CD105(+)的移植物显示软骨内骨化不足和纤维软骨组织。基于-肌动蛋白,FAKy,(397)和ERK1 / 2激活的表达,我们将成熟阶段定义为骨移植组装的关键。通过体外测定,与CD105(+)细胞相比,CD105(-)亚群显示出更高的粘附效率。考虑到体外和体内试验,这项研究表明在成熟阶段将支架与CD105(-)亚群整合代表了一种在骨科生物工程中临床使用的有吸引力的策略。

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