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与间充质干细胞进行三维共培养时关节软骨细胞的再分化

Articular chondrocyte redifferentiation in 3D co-cultures with mesenchymal stem cells.

作者信息

Meretoja Ville V, Dahlin Rebecca L, Wright Sarah, Kasper F Kurtis, Mikos Antonios G

机构信息

Department of Bioengineering, Rice University , Houston, Texas.

出版信息

Tissue Eng Part C Methods. 2014 Jun;20(6):514-23. doi: 10.1089/ten.tec.2013.0532. Epub 2014 Jan 4.

Abstract

In this work, we evaluated the ability of 3D co-cultures with mesenchymal stem cells (MSCs) to redifferentiate monolayer expanded articular chondrocytes (ACs) and produce cartilaginous extracellular matrix at varying stages of the dedifferentiation process and further examined the dependency of this effect on the culture medium composition. Primary bovine ACs were expanded in monolayers for up to nine population doublings to obtain seven cell stocks with gradually increasing levels of dedifferentiation. Culture expanded ACs were then seeded as monocultures and co-cultures with rabbit bone marrow-derived MSCs (30:70 ratio of ACs-to-MSCs) on porous scaffolds. Parallel cultures were established for each cell population in serum-containing growth medium and serum-free induction medium supplemented with dexamethasone and TGF-β3. After 3 weeks, all groups were analyzed for DNA content, glycosaminoglycan (GAG) and hydroxyproline (HYP) production, and chondrogenic gene expression. Significant enhancements in cellularity, GAG content and GAG/HYP ratio, and chondrogenic phenotype were observed in the induction medium compared to growth medium at all levels of AC expansion. Furthermore, primary co-cultures showed similarly enhanced chondrogenesis compared to monocultures in both culture media, whereas passaged ACs benefitted from co-culturing only in the induction medium. We conclude that co-cultures of ACs and MSCs can produce superior in vitro engineered cartilage in comparison to pure AC cultures, due to both heterotypic cellular interactions and decreased need for monolayer expansion of biopsied chondrocytes. While the initial level of AC dedifferentiation affected the quality of the engineered constructs, co-culture benefits were realized at all stages of AC expansion when suitable chondroinductive culture medium was used.

摘要

在本研究中,我们评估了与间充质干细胞(MSC)进行三维共培养,使单层扩增的关节软骨细胞(AC)重新分化并在去分化过程的不同阶段产生软骨细胞外基质的能力,并进一步研究了这种效应对培养基组成的依赖性。将原代牛AC在单层中扩增至最多9次群体倍增,以获得7种去分化水平逐渐增加的细胞株。然后将培养扩增的AC作为单一培养物和与兔骨髓来源的MSC(AC与MSC的比例为30:70)在多孔支架上进行共培养接种。针对每个细胞群体,在含血清生长培养基和补充地塞米松及转化生长因子-β3的无血清诱导培养基中建立平行培养。3周后,分析所有组的DNA含量、糖胺聚糖(GAG)和羟脯氨酸(HYP)产量以及软骨形成基因表达。与生长培养基相比,在所有AC扩增水平下,诱导培养基中细胞数量、GAG含量和GAG/HYP比值以及软骨形成表型均有显著增强。此外,在两种培养基中,原代共培养与单一培养相比,软骨形成同样增强,而传代AC仅在诱导培养基中通过共培养受益。我们得出结论,与纯AC培养相比,AC和MSC的共培养能够产生更优质的体外工程软骨,这归因于异型细胞间相互作用以及活检软骨细胞单层扩增需求的降低

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