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首页> 外文期刊>Journal of Dental Research: Official Publication of the International Association for Dental Research >Disruption of Tgfbr2 in Odontoblasts Leads to Aberrant Pulp Calcification
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Disruption of Tgfbr2 in Odontoblasts Leads to Aberrant Pulp Calcification

机译:Tgfbr2在成牙本质细胞中的破坏导致异常的纸浆钙化

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摘要

Transforming growth factor (TGF-) signaling has been implicated in dentin formation and repair; however, the molecular mechanisms underlying dentin formation remain unclear. To address the role of TGF- signaling in dentin formation, we analyzed odontoblast-specific Tgfbr2 conditional knockout mice. The mutant mice had aberrant teeth with thin dysplastic dentin and pulpal obliteration, similar to teeth from human patients with dentinogenesis imperfecta type II and dentin dysplasia. In mutant, the odontoblasts lost their cellular polarity, and matrix secretion was disrupted after mantle dentin formation. As a consequence, the amount of predentin decreased significantly, and an ectopic fibrous matrix was formed below the odontoblast layer. This matrix gradually calcified and obliterated the pulp chamber with increasing age. Immunohistochemistry revealed decreased expression of alkaline phosphatase in mutant odontoblasts. In mutant dentin, Dsp expression was reduced, but Dmp1 expression increased significantly. Collagen type I, biglycan, and Dsp were expressed in the ectopic matrix. These results suggest that loss of responsiveness to TGF- in odontoblasts results in impaired matrix formation and pulpal obliteration. Our study indicates that TGF- signaling plays an important role in dentin formation and pulp protection. Furthermore, our findings may provide new insight into possible mechanisms underlying human hereditary dentin disorders and reparative dentin formation.
机译:转化生长因子(TGF-)的信号传导与牙本质的形成和修复有关。但是,尚不清楚牙本质形成的分子机制。为了解决TGF-信号传导在牙本质形成中的作用,我们分析了成牙本质细胞特异性Tgfbr2条件性基因敲除小鼠。突变小鼠的牙齿异常变薄,具有薄弱的牙本质增生和牙髓闭塞,与人类患有II型牙本质不全和牙本质发育异常的患者的牙齿相似。在突变体中,成牙本质细胞失去了其细胞极性,并且在地幔牙本质形成后基质分泌被破坏。结果,前牙本质的量显着减少,并且在成牙本质细胞层下方形成了异位纤维基质。随着年龄的增长,该基质逐渐钙化并堵塞了果肉室。免疫组织化学显示突变成牙本质细胞中碱性磷酸酶的表达降低。在突变型牙本质中,Dsp表达降低,但Dmp1表达显着增加。 I型胶原,双链聚糖和Dsp在异位基质中表达。这些结果表明成牙本质细胞中对TGF-β的反应性丧失导致基质形成受损和牙髓闭塞。我们的研究表明,TGF-信号传导在牙本质形成和牙髓保护中起重要作用。此外,我们的发现可能为人类遗传性牙本质疾病和修复性牙本质形成的潜在机制提供新的见解。

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