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牙本质基质蛋白 1 和磷酸盐稳态对出生后牙髓、牙本质和牙釉质的形成至关重要。

Dentin matrix protein 1 and phosphate homeostasis are critical for postnatal pulp, dentin and enamel formation.

机构信息

Biomedical Sciences, Baylor College of Dentistry, Texas A&M Health Science Center, Dallas, TX 75246, USA.

出版信息

Int J Oral Sci. 2012 Dec;4(4):189-95. doi: 10.1038/ijos.2012.69. Epub 2012 Dec 21.

Abstract

Deletion or mutation of dentin matrix protein 1 (DMP1) leads to hypophosphatemic rickets and defects within the dentin. However, it is largely unknown if this pathological change is a direct role of DMP1 or an indirect role of phosphate (Pi) or both. It has also been previously shown that Klotho-deficient mice, which displayed a high Pi level due to a failure of Pi excretion, causes mild defects in the dentinal structure. This study was to address the distinct roles of DMP1 and Pi homeostasis in cell differentiation, apoptosis and mineralization of dentin and enamel. Our working hypothesis was that a stable Pi homeostasis is critical for postnatal tooth formation, and that DMP1 has an antiapoptotic role in both amelogenesis and dentinogenesis. To test this hypothesis, Dmp1-null (Dmp1(-/-)), Klotho-deficient (kl/kl), Dmp1/Klotho-double-deficient (Dmp1(-/-)/kl/kl) and wild-type (WT) mice were killed at the age of 6 weeks. Combinations of X-ray, microcomputed tomography (μCT), scanning electron microscopy (SEM), histology, apoptosis and immunohistochemical methods were used for characterization of dentin, enamel and pulp structures in these mutant mice. Our results showed that Dmp1(-/-) (a low Pi level) or kl/kl (a high Pi level) mice displayed mild dentin defects such as thin dentin and a reduction of dentin tubules. Neither deficient mouse line exhibited any apparent changes in enamel or pulp structure. However, the double-deficient mice (a high Pi level) displayed severe defects in dentin and enamel structures, including loss of dentinal tubules and enamel prisms, as well as unexpected ectopic ossification within the pulp root canal. TUNEL assay showed a sharp increase in apoptotic cells in ameloblasts and odontoblasts. Based on the above findings, we conclude that DMP1 has a protective role for odontoblasts and ameloblasts in a pro-apoptotic environment (a high Pi level).

摘要

牙本质基质蛋白 1(DMP1)的缺失或突变会导致低磷性佝偻病和牙本质缺陷。然而,目前还不清楚这种病理变化是 DMP1 的直接作用,还是磷酸盐(Pi)或两者的间接作用。先前的研究还表明,由于 Pi 排泄失败而导致 Pi 水平升高的 Klotho 缺陷型小鼠会导致牙本质结构的轻微缺陷。本研究旨在探讨 DMP1 和 Pi 动态平衡在牙本质和牙釉质细胞分化、凋亡和矿化中的不同作用。我们的工作假设是,Pi 动态平衡对于出生后牙齿形成至关重要,并且 DMP1 在成釉细胞和牙本质形成中具有抗凋亡作用。为了验证这一假设,我们在 6 周龄时处死了 Dmp1 基因敲除(Dmp1(-/-))、Klotho 缺陷(kl/kl)、Dmp1/Klotho 双缺陷(Dmp1(-/-)/kl/kl)和野生型(WT)小鼠。我们使用 X 射线、微计算机断层扫描(μCT)、扫描电子显微镜(SEM)、组织学、凋亡和免疫组织化学方法来描述这些突变小鼠的牙本质、牙釉质和牙髓结构。我们的结果表明,Dmp1(-/-)(Pi 水平低)或 kl/kl(Pi 水平高)小鼠表现出轻微的牙本质缺陷,如牙本质变薄和牙本质小管减少。这两种缺陷型小鼠均未显示牙釉质或牙髓结构的任何明显变化。然而,双缺陷型(Pi 水平高)小鼠的牙本质和牙釉质结构严重缺陷,包括牙本质小管和牙釉柱丧失,以及牙髓根管内意外异位骨化。TUNEL 检测显示成釉细胞和成牙本质细胞中的凋亡细胞数量急剧增加。基于上述发现,我们得出结论,DMP1 在促凋亡环境(Pi 水平高)中对成牙本质细胞和成釉细胞具有保护作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3033/3633060/791c7cdc1a62/ijos201269f1.jpg

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