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根尖切除术减少根长对小鼠牙再植后牙髓血运重建的影响。

The effects of reducing the root length by apicoectomy on dental pulp revascularization following tooth replantation in mice.

机构信息

Division of Pediatric Dentistry, Department of Oral Health Science, Niigata University Graduate School of Medical and Dental Sciences, Niigata, Japan.

Division of Anatomy and Cell Biology of the Hard Tissue, Department of Tissue Regeneration and Reconstruction, Niigata University Graduate School of Medical and Dental Sciences, Niigata, Japan.

出版信息

Dent Traumatol. 2021 Oct;37(5):677-690. doi: 10.1111/edt.12679. Epub 2021 Apr 16.

Abstract

BACKGROUND/AIM: Root length is a critical factor for dental pulp regeneration following tooth replantation. The aim of this study was to analyze the effects of reducing the root length by apicoectomy on the pulp healing process using a model for tooth replantation.

MATERIAL AND METHODS

After extraction of the upper first molars (M1) of 3-week-old mice, the roots from the experimental group (EG) were shortened to half to two-thirds of their length before replantation, whereas in the control group (CG) the extracted teeth were immediately repositioned into their alveolar sockets. To determine the effects of root resection on the survival of inherent pulp cells, this study included tooth transplantation with root resection using wild-type (WT) and green fluorescent protein (GFP) transgenic mice. The M1 of GFP transgenic mice were transplanted into the alveolar socket of the M1 of WT mice. The roots of the right M1 were shortened (EG), whereas the left M1 remained untreated (CG).

RESULTS

Apoptotic cells in the EG significantly decreased in number compared with the CG at day 3. Cell proliferative activity in the EG was significantly higher than that in the CG in the root pulp during days 3-5, and nestin-positive odontoblast-like cells began to arrange themselves along the pulp-dentin border in the cusp area at day 5 in the EG but not in the CG. At week 2, tertiary dentin had formed throughout the pulp in the EG, whereas the combined tissue of dentin and bone occupied the pulp space in 60% of the CG. Root resection also positively affected the survival of inherent pulp cells to differentiate into odontoblast-like cells as demonstrated by transplantation using GFP transgenic mice.

CONCLUSIONS

Reducing the root length accelerated pulp regeneration following tooth replantation due to the better environment for revascularization.

摘要

背景/目的:牙根长度是牙再植后牙髓再生的关键因素。本研究旨在通过牙再植模型分析根尖切除术缩短牙根长度对牙髓愈合过程的影响。

材料和方法

在 3 周龄小鼠的上颌第一磨牙(M1)拔出后,实验组(EG)的牙根在再植前缩短至其长度的一半至三分之二,而对照组(CG)则立即将拔出的牙齿重新定位到牙槽窝中。为了确定根尖切除对固有牙髓细胞存活的影响,本研究包括使用野生型(WT)和绿色荧光蛋白(GFP)转基因小鼠进行根尖切除的牙移植。将 GFP 转基因小鼠的 M1 移植到 WT 小鼠的 M1 牙槽窝中。右侧 M1 的牙根缩短(EG),而左侧 M1 未处理(CG)。

结果

与 CG 相比,EG 中的凋亡细胞数量在第 3 天明显减少。在第 3-5 天,EG 中的根牙髓中细胞增殖活性明显高于 CG,并且在第 5 天,EG 中的巢蛋白阳性成牙本质细胞样细胞开始沿着牙尖区域的牙髓-牙本质边界排列,但 CG 中没有。在第 2 周,EG 中的整个牙髓中形成了第三期牙本质,而在 CG 中,60%的牙髓空间被牙本质和骨的组合组织占据。根尖切除也通过 GFP 转基因小鼠的移植对固有牙髓细胞存活并分化为成牙本质细胞样细胞产生积极影响。

结论

由于有利于再血管化的环境,缩短牙根长度可加速牙再植后的牙髓再生。

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