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首页> 外文期刊>Acta biomaterialia >Functionalization of dynamic culture surfaces with a cartilage extracellular matrix extract enhances chondrocyte phenotype against dedifferentiation
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Functionalization of dynamic culture surfaces with a cartilage extracellular matrix extract enhances chondrocyte phenotype against dedifferentiation

机译:用软骨细胞外基质提取物对动态培养表面进行功能化可增强软骨细胞表型抵抗去分化

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Culture on silicone rubber surfaces has been shown to partially overcome the chondrocyte dedifferentiation characteristic of standard culture on rigid polystyrene. These methods typically involve functionalization of culture surfaces with proteins. Collagen type I is often used, but more cartilage-specific proteins may be more appropriate for chondrocytes. To explore this hypothesis, a twofold experimental design was applied. First, chondrocytes were cultured in rigid Petri dishes coated with silicone rubber ("static silicone" or SS culture) functionalized with either cartilage extracellular matrix (ECM) extract or collagen type I. Second, chondrocytes were cultured on monotonically expanded high extension silicone rubber dishes ("continuous expansion" or CE culture) functionalized with ECM extract and compared to cells grown in SS culture. There were no differential effects of surface functionalization with the ECM extract vs. collagen type I on chondrocyte morphology, viability, proliferation or apoptosis in SS culture. However, chondrocyte growth on the ECM extract was associated with significantly reduced collagen types I and X gene expression and significantly increased glycosaminoglycan (GAG) secretion. After 3 passages (P3) on ECM-coated SS culture, chondrocyte phenotype and GAG secretion was enhanced compared to cells passaged on collagen type I. Pellet cultures from P3 SS culture displayed enhanced collagen type II content when ECM extract was used for functionalization rather than collagen type I. In CE culture with ECM functionalization, chondrocyte dedifferentiation was significantly inhibited vs. SS cultures, as evidenced by both gene expression and pellet cultures. Functionalization of extendable culture surfaces with cartilage ECM extract therefore supports enhanced preservation of chondrocyte phenotype.
机译:已证明在硅橡胶表面上进行培养可部分克服刚性聚苯乙烯上标准培养的软骨细胞去分化特性。这些方法通常涉及用蛋白质对培养表面进行功能化。我经常使用I型胶原蛋白,但软骨特异性蛋白可能更适合软骨细胞。为了探索这一假设,应用了双重实验设计。首先,将软骨细胞培养在涂有以软骨细胞外基质(ECM)或I型胶原功能化的硅橡胶涂层的刚性培养皿中(“静态硅树脂”或SS培养物)。第二,将软骨细胞培养在单调扩展的高延伸硅橡胶培养皿上(“连续扩增”或CE培养)用ECM提取物功能化,并与SS培养中生长的细胞进行比较。 ECM提取物与I型胶原的表面功能化对SS培养中的软骨细胞形态,生存力,增殖或凋亡没有差异作用。但是,ECM提取物上的软骨细胞生长与I型和X型胶原蛋白的表达显着减少以及糖胺聚糖(GAG)分泌显着增加有关。在ECM包被的SS培养物中传代3次(P3)后,与传代I型胶原的细胞相比,软骨细胞的表型和GAG分泌得以增强。当使用ECM提取物而不是将ECM提取物用于功能性培养时,P3 SS培养物中的团粒培养物显示II型胶原含量增加。 I型胶原。在具有ECM功能的CE培养中,与SS培养相比,软骨细胞去分化被显着抑制,这由基因表达和沉淀培养证明。因此,用软骨ECM提取物对可扩展培养表面进行功能化可增强软骨细胞表型的保存。

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