Department of Endodontics, Stomatological Hospital of Chongqing Medical University, Chongqing, China.
Stomatological Hospital of Chongqing Medical University, Chongqing, China.
Int J Oral Sci. 2023 Mar 16;15(1):14. doi: 10.1038/s41368-023-00218-3.
Tooth germ injury can lead to abnormal tooth development and even tooth loss, affecting various aspects of the stomatognathic system including form, function, and appearance. However, the research about tooth germ injury model on cellular and molecule mechanism of tooth germ repair is still very limited. Therefore, it is of great importance for the prevention and treatment of tooth germ injury to study the important mechanism of tooth germ repair by a tooth germ injury model. Here, we constructed a Tg(dlx2b:Dendra2-NTR) transgenic line that labeled tooth germ specifically. Taking advantage of the NTR/Mtz system, the dlx2b tooth germ cells were depleted by Mtz effectively. The process of tooth germ repair was evaluated by antibody staining, in situ hybridization, EdU staining and alizarin red staining. The severely injured tooth germ was repaired in several days after Mtz treatment was stopped. In the early stage of tooth germ repair, the expression of phosphorylated 4E-BP1 was increased, indicating that mTORC1 is activated. Inhibition of mTORC1 signaling in vitro or knockdown of mTORC1 signaling in vivo could inhibit the repair of injured tooth germ. Normally, mouse incisors were repaired after damage, but inhibition/promotion of mTORC1 signaling inhibited/promoted this repair progress. Overall, we are the first to construct a stable and repeatable repair model of severe tooth germ injury, and our results reveal that mTORC1 signaling plays a crucial role during tooth germ repair, providing a potential target for clinical treatment of tooth germ injury.
牙胚损伤可导致牙齿发育异常甚至缺失,影响包括形态、功能和外观在内的整个咀嚼系统。然而,关于牙胚损伤模型在牙胚修复的细胞和分子机制方面的研究还非常有限。因此,研究牙胚损伤模型对牙胚修复的重要机制对于预防和治疗牙胚损伤具有重要意义。在这里,我们构建了一种 Tg(dlx2b:Dendra2-NTR)转基因系,该系特异性标记牙胚。利用 NTR/Mtz 系统,Mtz 可有效耗尽 dlx2b 牙胚细胞。通过抗体染色、原位杂交、EdU 染色和茜素红染色评估牙胚修复过程。在停止 Mtz 处理后几天,严重受损的牙胚得到修复。在牙胚修复的早期阶段,磷酸化 4E-BP1 的表达增加,表明 mTORC1 被激活。体外抑制 mTORC1 信号或体内敲低 mTORC1 信号均可抑制受损牙胚的修复。正常情况下,小鼠切牙受损后会得到修复,但抑制/促进 mTORC1 信号会抑制/促进这一修复过程。总之,我们首次构建了稳定且可重复的严重牙胚损伤修复模型,我们的结果表明 mTORC1 信号在牙胚修复过程中起着至关重要的作用,为临床治疗牙胚损伤提供了一个潜在的靶点。