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首页> 外文期刊>Osteoarthritis and cartilage >Loss of chondrogenic potential in dedifferentiated chondrocytes correlates with deficient Shc-Erk interaction and apoptosis.
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Loss of chondrogenic potential in dedifferentiated chondrocytes correlates with deficient Shc-Erk interaction and apoptosis.

机译:去分化的软骨细胞中软骨生成能力的丧失与Shc-Erk相互作用和细胞凋亡不足有关。

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OBJECTIVE: If dedifferentiated chondrocytes could be induced to redifferentiate in vitro, then we might thereby be furnished with a population of phenotypically stable cells for autologous implantation in reconstructive surgery. We therefore investigated the redifferentiation capabilities of chondrocytes which, having migrated from alginate beads to form a monolayer, were subsequently passaged. We also characterized the molecular traits of irreversibly dedifferentiated cells. METHODS: Human chondrocytes that had migrated from alginate beads to form a monolayer (passage 1) were passaged seven times (passages 2-8). Cells from each passage were then recultivated in alginate beads. We assessed the synthesis of type-II collagen, cartilage-specific proteoglycans, adhesion molecules (integrins), signaling proteins (Src-homology collagen [Shc] and extracellular-signal-regulated kinase [Erk]) and the apoptosis marker 'activated' caspase-3 in monolayer or secondary alginate cultures. RESULTS: The synthesis of cartilage-specific type-II collagen, alpha 3-integrin, Shc and activated Erk1/2 decreased rapidly after four passages in monolayer culture. Up to passage 4, cells redifferentiated in alginate culture. However, between passages 5 and 8, cells began to produce activated caspase-3; these cells not only failed to redifferentiate when recultivated in alginate, but underwent apoptosis. CONCLUSION: We conclude that the loss of chondrogenic potential by chondrocytes maintained in monolayer culture is associated with a decrease in the synthesis of cartilage markers and with a suppressed activation of key signaling proteins in the Ras-mitogen-activated protein kinase pathway (Shc and Erk1/2). These events lead to apoptosis. A decrease in Shc/Erk expression/interaction could serve as a recognition marker for irreversibly dedifferentiated chondrocytes in tissue engineering.
机译:目的:如果可以诱导去分化的软骨细胞在体外再分化,那么我们可能因此而获得了一组表型稳定的细胞,用于在重建手术中进行自体植入。因此,我们研究了软骨细胞的再分化能力,这些软骨细胞已从藻酸盐珠子迁移形成单层,随后被传代。我们还表征了不可逆去分化细胞的分子特征。方法:将从藻酸盐珠子迁移形成单层的人类软骨细胞传代(第1代)传代7次(传代2-8)。然后将每次传代的细胞在藻酸盐珠中培养。我们评估了II型胶原蛋白,软骨特异性蛋白聚糖,粘附分子(整联蛋白),信号蛋白(Src同源胶原蛋白[Shc]和细胞外信号调节激酶[Erk])和凋亡标记“激活的”胱天蛋白酶的合成在单层或二级藻酸盐培养物中为-3。结果:单层培养四代后,软骨特异性II型胶原,α3-整联蛋白,Shc和活化的Erk1 / 2的合成迅速减少。直到第4代,细胞在藻酸盐培养物中重新分化。然而,在第5和第8代之间,细胞开始产生活化的caspase-3。这些细胞不仅在藻酸盐中培养时未能重新分化,而且还发生了凋亡。结论:我们得出的结论是,单层培养物中维持的软骨细胞丧失了软骨形成能力,这与软骨标记物合成的减少以及Ras-促分裂原激活的蛋白激酶途径(Shc和Erk1)中关键信号蛋白的活化受到抑制有关。 / 2)。这些事件导致凋亡。 Shc / Erk表达/相互作用的降低可以作为组织工程中不可逆去分化软骨细胞的识别标记。

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