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AG-041R stimulates cartilage matrix synthesis without promoting terminal differentiation in rat articular chondrocytes.

机译:AG-041R刺激软骨基质合成,而不会促进大鼠关节软骨细胞的终末分化。

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OBJECTIVE: AG-041R, a novel indolin-2-one derivative, has recently been demonstrated to induce systemic hyaline cartilage hyperplasia in rats. The aim of this study was to characterize its anabolic actions on chondrocytes. DESIGN: Chondrocytes were isolated from knee joints of 5-week-old SD rats. Effects of AG-041R on cartilage matrix synthesis were examined by measuring [(35)S]sulfate incorporation into proteoglycans, Alcian blue staining, and Northern blotting of cartilage matrix genes. ALP activity, mineral deposition and the expression of markers for hypertrophic chondrocytes, were assessed for terminal differentiation of chondrocytes. Roles of endogenous TGF-beta/BMPs and MEK1/Erk signaling in the action of AG-041R were investigated using the neutralizing soluble receptors and the MEK1 inhibitor. RESULTS: AG-041R accelerated proteoglycan synthesis assessed by both [(35)S]sulfate incorporation and Alcian blue stainable extracellular matrix accumulation. It also up-regulated the gene expression of type II collagen and aggrecan, as well as tenascin, a marker for articular cartilage. In contrast, AG-041R suppressed ALP activity, mineralization, and the gene expression of type X collagen and Cbfa1, indicating that AG-041R prevents chondrocyte terminal differentiation. AG-041R increased in BMP-2 mRNA, and the neutralizing soluble receptor for BMPs reversed the stimulatory effects of AG-041R on cartilage matrix synthesis. Moreover, AG-041R activated MEK1/Erk pathway, which was revealed to prevent chondrocyte terminal differentiation. CONCLUSION: AG-041R stimulates cartilage matrix synthesis without promoting terminal differentiation in rat articular chondrocytes, which is mediated at least in part by endogenous BMPs and Erk. The data demonstrates that AG-041R has a potential to be a useful therapeutic agent for articular cartilage disorders.
机译:目的:AG-041R是一种新型的吲哚-2-酮衍生物,已被证明可诱导大鼠系统性透明软骨增生。这项研究的目的是表征其对软骨细胞的合成代谢作用。设计:从5周龄SD大鼠的膝关节中分离软骨细胞。通过测量[(35)S]硫酸盐掺入蛋白聚糖,Alcian蓝染色和软骨基质基因的Northern印迹,检查了AG-041R对软骨基质合成的影响。评估了肥大软骨细胞的ALP活性,矿物质沉积和标志物的表达,以区分软骨细胞的终末分化。使用中和性可溶性受体和MEK1抑制剂研究了内源性TGF-β/ BMPs和MEK1 / Erk信号在AG-041R作用中的作用。结果:AG [041R加速蛋白多糖合成通过[(35)S]硫酸盐掺入和Alcian蓝可染色的细胞外基质积累评估。它还上调了II型胶原蛋白和软骨聚集蛋白聚糖以及腱软骨的标志物腱生蛋白的基因表达。相反,AG-041R抑制了ALP活性,矿化以及X型胶原蛋白和Cbfa1的基因表达,表明AG-041R阻止了软骨细胞末端分化。 AG-041R增加了BMP-2 mRNA的表达,中和性BMPs可溶性受体逆​​转了AG-041R对软骨基质合成的刺激作用。此外,AG-041R激活了MEK1 / Erk通路,该通路可防止软骨细胞末端分化。结论:AG-041R刺激软骨基质的合成而不促进大鼠关节软骨细胞的终末分化,这至少部分是由内源性BMP和Erk介导的。数据表明,AG-041R有潜力成为关节软骨疾病的有用治疗剂。

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