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杜文, 罗天, 于海洋. 机械应力相关调控蛋白在小鼠磨牙发育中的时空表达[J]. 四川大学学报(医学版), 2021, 52(1): 82-86. DOI: 10.12182/20210160105
引用本文: 杜文, 罗天, 于海洋. 机械应力相关调控蛋白在小鼠磨牙发育中的时空表达[J]. 四川大学学报(医学版), 2021, 52(1): 82-86. DOI: 10.12182/20210160105
DU Wen, LUO Tian, YU Hai-yang. The Spatiotemporal Expression Patterns of Mechanical-Stress Related Regulatory Proteins in Mouse Molar Development[J]. Journal of Sichuan University (Medical Sciences), 2021, 52(1): 82-86. DOI: 10.12182/20210160105
Citation: DU Wen, LUO Tian, YU Hai-yang. The Spatiotemporal Expression Patterns of Mechanical-Stress Related Regulatory Proteins in Mouse Molar Development[J]. Journal of Sichuan University (Medical Sciences), 2021, 52(1): 82-86. DOI: 10.12182/20210160105

机械应力相关调控蛋白在小鼠磨牙发育中的时空表达

The Spatiotemporal Expression Patterns of Mechanical-Stress Related Regulatory Proteins in Mouse Molar Development

  • 摘要:
      目的  通过检测机械应力相关调控蛋白〔肌动蛋白纤维(F-actin)、非肌肉肌球蛋白ⅡB(non-muscle myosin ⅡB,NMⅡB)和细胞黏着斑蛋白Vinculin〕在牙发育过程的时空性表达,探究机械应力与牙早期发育之间可能的联系。
      方法  以小鼠磨牙为研究模型,通过免疫荧光染色,检测构成化学机械系统的重要分子F-actin、NMⅡB和Vinculin在牙发育蕾状期、帽状期、钟状早期和钟状末期的表达。
      结果  染色结果显示F-actin、NMⅡB和Vinculin均在牙发育各阶段广泛或局限性表达于牙上皮,其中F-actin亦稳定表达于间充质细胞中。荧光表达强度定量分析显示,F-actin和NMⅡB的表达均在牙发育早期阶段有明显上升,但分别于钟状早期和钟状末期回落,相邻发育阶段间的表达变化差异均有统计学意义(P<0.05),而Vinculin的表达相对稳定,仅钟状末期较钟状早期有所升高(P<0.05)。
      结论  机械应力参与牙早期发育过程。其中,F-actin可能在分散和传导机械应力的方面发挥重要作用,NMⅡB作用于牙发育中的牙上皮内陷及牙尖形成,Vinculin可响应力学刺激并与细胞黏附分子相互作用影响牙发育过程,而由肌动蛋白与肌球蛋白结合形成的肌动球蛋白复合体和细胞黏附分子在牙发育中的联系及具体作用机制依然有待进一步探究。

     

    Abstract:
      Objective  In order to better understand the role of mechanical stress in early tooth development, we examined the spatiotemporal expression patterns of mechanical-stress related regulatory protein (actin filament, or F-actin), non-muscle myosin ⅡB (NMⅡB) and vinculin at different stages of tooth development in mice.
      Methods  Mouse first mandible molars were used as the research model. Immunofluorescence staining was performed to detect the expression patterns of F-actin, NMⅡB and Vinculin, the key molecules constituting the chemical mechanical system, at bud, cap, early bell and late bell stages of tooth.
      Results  F-actin, NMⅡB and vinculin were all expressed in the tooth epithelium in an extensive or a limited way at different stages of tooth development, while F-actin was also expressed steadily in the mesenchymal cells. The quantitative analysis of fluorescence intensity showed that F-actin and NMⅡB exhibited significantly increase in the early stage of tooth development, but then dropped to their basal levels at the end of the late bell stage and the early bell stage respectively, with the differences of expression changes between successive developmental stages showing statistically significance (P<0.05). Vinculin expression, however, remained at a relatively constant level except for the late bell stage when vinculin expression was slightly elevated compared to that of the early bell stage (P<0.05).
      Conclusions  The findings suggest that mechanical stress is involved in early tooth development. F-actin may have an important role in dispersing and transmitting mechanical stress while NMⅡB may participate in tooth epithelial invagination and cusps formation. The findings also suggest that vinculin can respond to the mechanical stimuli and its interaction with cell adhesion molecules may play a role in tooth development. The mechanism of how actomyosin and cell adhesion interact with each other in regulating tooth development still needs further investigation.

     

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