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Non-contact Coculture Reveals a Comprehensive Response of Chondrocytes Induced by Mesenchymal Stem Cells Through Trophic Secretion

机译:非接触共培养揭示了间充质干细胞通过营养分泌诱导的软骨细胞的综合反应。

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摘要

Coculture between mesenchymal stem cells (MSCs) and chondrocytes has significant implications in cartilage regeneration. However, a conclusive understanding remains elusive. Previously, we reported that rabbit bone marrow-derived MSCs (rbBMSCs) could downregulate the differentiated phenotype of rabbit articular chondrocytes (rbACs) in a non-contact coculture system for the first time. In the present study, a systemic investigation was performed to understand the biological characteristics of chondrocytes in coculture with MSCs. Firstly, cells (MSCs and chondrocytes) from different origins were cocultured in transwell system. Different chondrocytes, when cocultured with different MSCs respectively, consistently demonstrated stimulated proliferation, transformed morphology and declined glycosaminoglycan secretion of chondrocytes. Next, cell surface molecules and the global gene expression of rbACs were characterized. It was found that cocultured rbACs showed a distinct surface molecule profile and global gene expression compared to both dedifferentiated rbACs and rbBMSCs. In the end, cocultured rbACs were passaged and induced to undergo the chondrogenic redifferentiation. Better growth and chondrogenesis ability were confirmed compared with control cells without coculture. Together, chondrocytes display comprehensive changes in coculture with MSCs and the cocultured rbACs are beneficial for cartilage repair.Electronic supplementary materialThe online version of this article (doi:10.1007/s13770-017-0084-8) contains supplementary material, which is available to authorized users.
机译:间充质干细胞(MSCs)与软骨细胞之间的共培养对软骨再生具有重要意义。但是,尚无定论。先前,我们报道了兔骨髓间充质干细胞(rbBMSCs)首次在非接触式共培养系统中下调了兔关节软骨细胞(rbACs)的分化表型。在本研究中,进行了系统的研究,以了解与MSCs共培养的软骨细胞的生物学特性。首先,将不同来源的细胞(MSCs和软骨细胞)在transwell系统中共培养。当分别与不同的MSC共培养时,不同的软骨细胞始终显示出软骨细胞的刺激的增殖,转化的形态和糖胺聚糖的分泌下降。接下来,表征了细胞表面分子和rbAC的整体基因表达。发现与去分化的rbAC和rbBMSC相比,共培养的rbAC显示出独特的表面分子概况和整体基因表达。最后,使共培养的rbACs传代并诱导其进行软骨原性再分化。与没有共培养的对照细胞相比,证实了更好的生长和软骨形成能力。软骨细胞共同显示出与MSC共培养的全面变化,并且共培养的rbAC对软骨修复有利。用户。

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