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首页> 外文期刊>Scientific reports. >Differential expression of TGF-β superfamily members and role of Smad1/5/9-signalling in chondral versus endochondral chondrocyte differentiation
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Differential expression of TGF-β superfamily members and role of Smad1/5/9-signalling in chondral versus endochondral chondrocyte differentiation

机译:TGF-β超家族成员的差异表达及SMAD1 / 5/9信号传导在骨髓内的作用与脑内软骨细胞分化

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Proteins of the transforming-growth-factor-β (TGF-β)-superfamily have a remarkable ability to induce cartilage and bone and the crosstalk of TGF-β - and BMP-signalling pathways appears crucial during chondrocyte development. Aim was to assess the regulation of TGF-β-superfamily members and of Smad2/3- and Smad1/5/9-signalling during endochondral in vitro chondrogenesis of mesenchymal stromal cells (MSC) relative to chondral redifferentiation of articular chondrocytes (AC) to adjust chondrocyte development of MSC towards a less hypertrophic phenotype. While MSC increased BMP4 and BMP7 and reduced TGFBR2 and TGFBR3-expression during chondrogenesis, an opposite regulation was observed during AC-redifferentiation. Antagonists CHRD and CHL2 rose significantly only in AC-cultures. AC showed higher initial BMP4, pSmad1/5/9 and SOX9 protein levels, a faster (re-)differentiation but a similar decline of pSmad2/3- and pSmad1/5/9-signalling versus MSC-cultures. BMP-4/7-stimulation of MSC-pellets enhanced SOX9 and accelerated ALP-induction but did not shift differentiation towards osteogenesis. Inhibition of BMP-signalling by dorsomorphin significantly reduced SOX9, raised RUNX2, maintained collagen-type-II and collagen-type-X lower and kept ALP-activity at levels reached at initiation of treatment. Conclusively, ALK1,2,3,6-signalling was essential for MSC-chondrogenesis and its prochondrogenic rather than prohypertrophic role may explain why inhibition of canonical BMP-signalling could not uncouple cartilage matrix production from hypertrophy as this was achieved with pulsed PTHrP-application.
机译:转化生长因子-β(TGF-β)的蛋白质 - 细胞具有显着的诱导软骨和骨骼的能力,并且TGF-β - 和BMP信号传导途径的串扰在软骨细胞发育过程中至关重要。目的是评估TGF-β - 超家族成员和Smad2 / 3-和Smad2 / 3-和Smad2 / 3-和Smad1 / 5/9 - 信号传导,相对于关节细胞(AC)的骨髓细胞(AC)的骨髓细胞调整MSC的软骨细胞朝向较少的肥厚表型。虽然MSC增加了BMP4和BMP7,并且在软骨发生过程中降低了TGFBR2和TGFBR3 - 表达,但在AC重新细化期间观察到相反的调节。拮抗剂CHRD和CHL2仅在AC培养物中显着升高。 AC显示出更高的初始BMP4,PSMAD1 / 5/9和SOX9蛋白水平,更快(重新)分化,但PSMAD2 / 3-和PSMAD1 / 5/9信号传导与MSC培养物相似的衰减。 BMP-4 / 7-刺激MSC-颗粒增强SOX9和加速ALP诱导,但没有改变朝向骨发生的分化。通过背体抑制BMP信号传导显着降低SOX9,升高的RONX2,维持胶原型-II和胶原型-X降低并在达到治疗开始时达到的水平保持ALP活性。结论,ALK1,2,3,6-信号对MSC-软骨发生至关重要,其促进的促副作用可以解释为什么抑制规范BMP信号传导不能从润肤症中抑制软骨基质,因为这是通过脉冲PTHRP应用来实现的影响。 。

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