Conservative Dentistry Department, Endodontics, Faculty of dentistry, Alexandria University, Champolion Street, Azarita, Alexandria, Egypt.
Tissue engineering labs, Faculty of dentistry, Alexandria University, Alexandria, Egypt.
Lasers Med Sci. 2019 Oct;34(8):1689-1698. doi: 10.1007/s10103-019-02804-6. Epub 2019 May 27.
To investigate the effects of gallium-aluminum-arsenide (GaAlAs) diode laser low-level laser therapy (LLLT) on angiogenesis and dentinogenesis of the dentin-pulp complex in a human tooth slice-based in vitro model. Forty tooth slices were prepared from 31 human third molars. Slices were cultured at 37 °C, 5% CO, and 95% humidity and randomly assigned to one of the following groups: group I: no laser treatment, group II: 660-nm diode laser; energy density = 1 J/cm, group III: 660-nm diode laser; energy density = 3 J/cm, group IV: 810-nm diode laser; energy density = 1 J/cm and group V: 810-nm diode laser; energy density = 3 J/cm. LLLT was applied on the third and fifth days of culture. After 7 days, tissues were retrieved for real-time RT-PCR analysis to investigate the expression of VEGF, VEGFR2, DSPP, DMP-1, and BSP in respect to controls. Lower energy density (1 J/cm) with the 660 nm wavelength showed a statistically significant up-regulation of both angiogenic (VEGF: 15.3-folds and VEGFR2: 3.8-folds) and odontogenic genes (DSPP: 6.1-folds, DMP-1: 3-fold, and BSP: 6.7-folds). While the higher energy density (3 J/cm) with the 810 nm wavelength resulted in statistically significant up-regulation of odontogenic genes (DSPP: 2.5-folds, DMP-1: 17.7-folds, and BSP: 7.1-folds), however, the angiogenic genes had variable results where VEGF was up-regulated while VEGFR2 was down-regulated. Low-level laser therapy could be a useful tool to promote angiogenesis and dentinogenesis of the dentin-pulp complex when parameters are optimized.
为了研究镓铝砷(GaAlAs)二极管激光低水平激光疗法(LLLT)对人牙切片体外模型中牙髓复合体血管生成和牙本质形成的影响。从 31 颗人类第三磨牙中制备了 40 个牙切片。将切片在 37°C、5%CO 和 95%湿度下培养,并随机分配到以下组之一:组 I:无激光处理,组 II:660nm 二极管激光;能量密度=1J/cm,组 III:660nm 二极管激光;能量密度=3J/cm,组 IV:810nm 二极管激光;能量密度=1J/cm,组 V:810nm 二极管激光;能量密度=3J/cm。LLLT 于培养的第 3 天和第 5 天应用。培养 7 天后,回收组织进行实时 RT-PCR 分析,以研究 VEGF、VEGFR2、DSPP、DMP-1 和 BSP 在对照方面的表达。660nm 波长的低能量密度(1J/cm)显示出血管生成(VEGF:15.3 倍和 VEGFR2:3.8 倍)和牙源性基因(DSPP:6.1 倍,DMP-1:3 倍和 BSP:6.7 倍)的统计学显著上调。然而,810nm 波长的更高能量密度(3J/cm)导致牙源性基因(DSPP:2.5 倍,DMP-1:17.7 倍和 BSP:7.1 倍)的统计学显著上调,而血管生成基因的结果则有所不同,其中 VEGF 上调,而 VEGFR2 下调。当参数优化时,低水平激光疗法可能成为促进牙髓复合体血管生成和牙本质形成的有用工具。