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釉基质衍生物可促进牙髓的修复过程。

Enamel matrix derivative promotes reparative processes in the dental pulp.

作者信息

Nakamura Y, Hammarström L, Lundberg E, Ekdahl H, Matsumoto K, Gestrelius S, Lyngstadaas S P

机构信息

Department of Endodontics, School of Dentistry, Showa University, 2-1-1, Kitasenzoku, Ohta-ku, Tokyo 145-8515, Japan.

出版信息

Adv Dent Res. 2001 Aug;15:105-7. doi: 10.1177/08959374010150010201.

Abstract

During odontogenesis, amelogenins from the preameloblasts are translocated to differentiating odontoblasts in the dental papilla, suggesting that amelogenins may be associated with odontoblast changes during development. In the present study, we have explored the effects of enamel matrix derivative (EMD) on the healing of a pulpal wound. Coronal pulp tissue of permanent maxillary premolars of miniature swine were exposed through buccal class V cavities. The exposed pulp was capped with EMD. The contralateral teeth served as controls and were capped with a calcium hydroxide paste (Dycal). The cavities were sealed with glass-ionomer cement. After 2 and 4 weeks, the histology of the teeth was analyzed. In the EMD-treated teeth, large amounts of newly formed dentin-like hard tissue with associated formative cells outlined the pulpal wound separating the cavity area from the remaining pulp tissue. Inflammatory cells were present in the wound area but not subjacent to the newly formed hard tissue. Morphometric analysis showed that the amount of hard tissue formed in EMD-treated teeth was more than twice that of the calcium-hydroxide-treated control teeth (p < 0.001), suggesting that EMD is capable of promoting reparative processes in the wounded pulp more strongly than is calcium hydroxide.

摘要

在牙胚发生过程中,成釉细胞产生的釉原蛋白会转移至牙乳头中正在分化的成牙本质细胞,这表明釉原蛋白可能与发育过程中成牙本质细胞的变化有关。在本研究中,我们探究了釉基质衍生物(EMD)对牙髓损伤愈合的影响。通过颊侧V类洞暴露小型猪上颌恒前磨牙的冠髓组织。将暴露的牙髓用EMD覆盖。对侧牙齿作为对照,用氢氧化钙糊剂(Dycal)覆盖。用玻璃离子水门汀封闭窝洞。2周和4周后,分析牙齿的组织学情况。在经EMD处理的牙齿中,大量新形成的类似牙本质的硬组织以及相关的形成细胞勾勒出牙髓损伤区域,将窝洞区域与剩余牙髓组织分隔开来。伤口区域存在炎性细胞,但新形成的硬组织下方不存在炎性细胞。形态计量分析表明,经EMD处理的牙齿中形成的硬组织量是经氢氧化钙处理的对照牙齿的两倍多(p < 0.001),这表明EMD比氢氧化钙更能有力地促进受伤牙髓的修复过程。

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