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The essential role of matrix selection on the osteoblastic and chondrocytic differentiation of mesenchymal stem cell

机译:基质选择对间充质干细胞的骨细胞和软骨细胞分化的基本作用

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Introduction: MSC functions and cell fate have been affected by its microenvironments, including chemical environment (soluble and insoluble factors, surface chemistry etc.) and physical environment (matrix elasticity, mechanical force). The selection of matrix would likely exert important influence on MSC recruitment, attachment, condensation, proliferation that may ultimately affect the final fate of the MSCs. Materials and Methods: Porous hydroxyapatite coatings were prepared through a novel liquid precursor plasma spraying process and infiltrated with the collagen and synthetic hydrogel, respectively. Suspension of MSCs was seeded on HA-collagen and HA-synthetic hydrogel substrate surfaces, and MSC differentiation toward the osteoblastic and chondrocytic lineages were systematically compared as a results of the residing matrix. The effect of the presence of the inorganic substrates (Ti and HA) on MSC functions and cell fate was also examined in terms of adhesion, cytoskeleton organization, migration and differentiation. Result and Discussion: The present study reports that the matrix itself has a critical regulating effect on the MSC differentiation lineage and the selection of the bone formation mode. The HA-collagen group samples stimulated MSC differentiation into the osteoblastic lineage and showed inhibitory effect on chondrogenesis, as evidence by the up-regulation and strong upward trend of ALP, OPIM and OCN expressions. In contrast, the HA-synthetic hydrogel group samples promoted MSC differentiation into the chondrocytic lineage as evidenced by the up-regulation and strong upward trend of Sox9, Col Ⅱ and Col X. The HA-collagen/BMP samples also exhibited a straightforward intramembranous bone formation mode at ectopic sites, whereas the HA-synthetic hydrogel/BMP ones demonstrated an endochondral bone formation mode. Furthermore, The presence of the inorganic substrate likely provided suitable physical microenvironment that were beneficial for MSC cytoskeleton organization and migration, which are critical to drive the MSC differentiation into the osteoblastic lineage. Conclusion: Cell matrix interaction is a critical factor that affects the biological responses of MSCs. The present study reports that the matrix has a critical regulating effect on MSC differentiation and the subsequent bone formation modes. A simply combined HA-collagen matrix stimulates the MSC differentiation into the osteoblastic lineage and leads to a straightforward intramembranous bone formation mode, in contrast to the chondrocytic differentiation and endochondral mode observed on HA-synthetic hydrogel matrix. Furthermore, the presence of the inorganic substrate, in particular HA, played an indispensable role for collagen self-assembly and helped to provide a suitable physical environment for MSC actin cytoskeleton organization, migration which are critical for maintaining osteogenic differentiation. Fig. 1. Road maps of matrix directed MSC differentiation and bone formation mode.
机译:简介:MSC功能和细胞命运受其微环境影响,包括化学环境(可溶性和不溶性因子,表面化学等)和物理环境(基质弹性,机械力)。矩阵的选择可能对MSC招生,附着,缩合,增殖产生的重要影响可能最终影响MSC的最终命运。材料和方法:通过新型液体前体等离子体喷涂工艺制备多孔羟基磷灰石涂料,并分别用胶原和合成水凝胶渗透。将MSCs的悬浮液接种在Ha-Collagen和Ha-合成水凝胶底物表面上,并且系统地将MSC分化与截止基质的结果进行了系统地被系统地进行了混合。还在粘附,细胞骨架组织,迁移和分化方面检查了无机底物(Ti和HA)对MSC功能和细胞命运的影响。结果和讨论:本研究报告说,矩阵本身对MSC分化谱系具有临界调节效果和骨形成模式的选择。 HA-Collagen组样品刺激了MSC分化成骨细胞谱系,并表现出对软骨发生的抑制作用,作为ALP,OPIM和OCN表达的上调和强烈向上趋势的证据。相反,HA-合成水凝胶基团样品促进MSC分化进入软骨细胞谱系,如Sox9,ColⅡ和Col X的上调和强向上趋势所证明的.Ha-Collagen / BMP样品也表现出直接的膜上骨在异位位点的形成模式,而HA-合成水凝胶/ BMP符合子于骨形成模式。此外,无机衬底的存在可能提供适当的物理微环境,这些物理微环境对于MSC细胞骨架组织和迁移有益,这对于将MSC分化驱动到骨细胞谱系中至关重要。结论:细胞基质相互作用是影响MSCs的生物反应的关键因素。本研究报告说,基质对MSC分化和随后的骨形成模式具有关键调节效果。简单地组合的HA-Collagen基质刺激MSC分化进入成骨细胞谱系,并导致直接的膜状骨形成模式,与在HA-合成水凝胶基质上观察到的软骨细胞分化和内窥镜模式相反。此外,对胶原自组装产生无机底物,特别是HA的不可或缺的作用,并有助于为MSC肌动蛋白细胞骨架组织提供合适的物理环境,这对于维持成骨分化至关重要。图1.矩阵定向MSC分化和骨形成模式的路线图。

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