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Gene expression markers in horse articular chondrocytes: Chondrogenic differentiaton IN VITRO depends on the proliferative potential and ageing. Implication for tissue engineering of cartilage

机译:马关节软骨细胞中的基因表达标志物:体外有软骨形成的不同差距取决于增殖性潜力和衰老。 软骨组织工程的含义

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Chondrocyte dedifferentiation is a key limitation in therapies based on autologous chondrocyte implantation for cartilage repair. Articular chondrocytes, obtained from (metacarpophalangeal and metatarsophalangeal) joints of different aged horses, were cultured in monolayer for several passages (P0 to P8). Cumulative Populations Doublings Levels (PDL) and gene expression of relevant chondrocyte phenotypic markers were analysed during culturing. Overall data confirmed that, during proliferation in vitro, horse chondrocytes undergo marked morphological and phenotypic alterations of their differentiation status. Particularly, the dedifferentiation started early in culture (P0-P1) and was very marked at P3 subculture (PDL 4-6): proliferative phase after P3 could be critical for maintenance/loss of differentiation potential. In elderly animals, chondrocytes showed aspects of dedifferentiation shortly after their isolation, associated with reduced proliferative capacity. Regarding the gene expression of major cartilage markers (Col2, Aggrecan, SOX9) there was a very early reduction (P1) in proliferating chondrocytes independent of age. The chondrocytes from adult donors showed a more stable expression (up to P3) of some (Col6, Fibromodulin, SOX6, TG beta 1) markers of mature cartilage; these markers could be tested as parameter to determine the dedifferentiation level. This study can provide parameters to identify up to which "culture step" chondrocytes for implantation with a conserved phenotypic potential can be obtained, and to test the efficiency of biomaterial scaffold or chondroinductive media/signals to maintain/recover the chondrocyte phenotype. Moreover, the determination of levels and time related expression of these markers can be useful during the chondroinduction of mesenchymal stem cells.
机译:软骨细胞消除剂是基于自体软骨细胞植入软骨修复的疗法的关键限制。从(Metacarpophalangeal和MetaTarsophalangeal)的不同老年马匹的关节细胞骨细胞,在单层培养几个通道(P0至P8)。在培养期间分析了累积群体倍增水平(PDL)和相关软骨细胞表型标志物的基因表达。总体数据证实,在体外增殖期间,马软骨细胞经历了显着的形态和表型改变其分化状态。特别是,在培养物(P0-P1)早期开始的去细胞(P0-P1)并在P3转培养(PDL 4-6)中非常标记:P3后的增殖相对于维护/损失分化潜力至关重要。在老年动物中,软骨细胞在其分离后不久显示了去除湿的方面,与降低的增殖能力相关。关于主要软骨标记物(COL2,Excrececan,Sox9)的基因表达,在增殖软骨细胞中均较小,含有较小的软骨细胞。来自成人供体的软骨细胞显示成熟软骨的一些(COL6,纤维蛋白,SOX6,TGβ1)标记的更稳定的表达(最多p3);这些标记可以被测试为参数以确定消除型水平。该研究可以提供参数,以确定可以获得具有保守表型电位的植入植入的“培养步骤”软骨细胞,并测试生物材料支架或软骨内容介质/信号的效率,以维持/回收软骨细胞表型。此外,这些标记物的水平和时间相关表达的测定可以在间充质干细胞的软骨丁基中有用。

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