Taniguchi Yusuke, Matsuzaki Etsuko, Daigo Yuki, Tsutsumi Takashi, Fukuoka Hiroshi, Kakura Kae, Egashira Kei, Takahashi Kazuya, Kido Hirofumi
Section of Oral Implantology, Department of Oral Rehabilitation, Fukuoka Dental College, Fukuoka, Japan.
Section of Operative Dentistry and Endodontology, Department of Odontology, Fukuoka Dental College, Fukuoka, Japan.
J Dent Sci. 2022 Apr;17(2):1001-1008. doi: 10.1016/j.jds.2021.11.004. Epub 2021 Nov 26.
BACKGROUND/PURPOSE: As an extraction wound closes, the mucosal epithelium of the tooth extraction wound impedes the space for new bone formation by invading into the extraction socket. Thus, the height of the alveolar crest decreases, causing significant depression of the alveolar mucosa. In this study, we created a rat tooth extraction model and examined the effects of laser irradiation by CO and diode on the dynamics of myofibroblast expression through α-SMA, and TGF-β1.
After tooth extraction of five-week-old male Wistar rats, they were divided into two laser treatment groups (CO laser or diode laser was irradiated into tooth extraction socket) and non-laser treatment group (control group). Surrounding tissues, including the extraction socket, were removed at 3, 5, 7, and 21 days after tooth extraction and the expression of α-SMA and TGF-β1 was verified using immunohistological techniques (6 animals in each group and each period, 72 animals in total).
α-SMA-positive cells and TGF-β1-positive areas were significantly lower in the two laser treatment groups than in the control group. Particularly, the diode group almost had no TGF-β1-positive areas on the 21st day when healing after tooth extraction was deemed to be completed.
Both CO and diode laser irradiation of tooth extraction wounds decreases α-SMA-positive cells and TGF-β1-positive areas. Further, it causes a decrease in myofibroblast expression and suppresses the invasion of mucosal epithelium into the extraction socket. Therefore, laser irradiation may exert a space-making effect for new bone formation and also contribute to socket preservation.
背景/目的:拔牙创口闭合时,拔牙创口的黏膜上皮会侵入拔牙窝,阻碍新骨形成的空间。因此,牙槽嵴高度降低,导致牙槽黏膜明显凹陷。在本研究中,我们建立了大鼠拔牙模型,研究了CO激光和二极管激光照射对通过α -平滑肌肌动蛋白(α - SMA)和转化生长因子 - β1(TGF - β1)表达的肌成纤维细胞动态变化的影响。
对5周龄雄性Wistar大鼠拔牙后,将其分为两个激光治疗组(分别向拔牙窝照射CO激光或二极管激光)和非激光治疗组(对照组)。在拔牙后3天、5天、7天和21天切除包括拔牙窝在内的周围组织,采用免疫组织学技术验证α - SMA和TGF - β1的表达(每组每个时间段6只动物,共72只动物)。
两个激光治疗组中α - SMA阳性细胞和TGF - β1阳性区域均显著低于对照组。特别是,在拔牙后愈合被认为完成的第21天,二极管激光组几乎没有TGF - β1阳性区域。
CO激光和二极管激光照射拔牙创口均能减少α - SMA阳性细胞和TGF - β1阳性区域。此外,它还会导致肌成纤维细胞表达减少,并抑制黏膜上皮侵入拔牙窝。因此,激光照射可能对新骨形成发挥扩隙作用,也有助于拔牙窝保存。