医学
成骨细胞
鱼腥草素骨
免疫印迹
骨保护素
碱性磷酸酶
骨重建
辐照
Er:YAG激光器
激光器
骨愈合
牙科
骨钙素
内科学
体外
外科
生物
激活剂(遗传学)
生物化学
酶
光学
核物理学
受体
基因
物理
作者
Yuji Tsuka,Ryo Kunimatsu,Hidemi Gunji,Shuzo Sakata,Ayaka Nakatani,Sho Oshima,Kodai Rikitake,Purtranti Nurul Aisyah,Isamu Kado,Shota Ito,Kotaro Tanimoto
标识
DOI:10.34172/jlms.2023.09
摘要
Introduction: A variety of laser treatments have been applied in numerous medical fields. In dentistry, laser treatments are used for caries, root canals, and periodontal disease, as well as surgical resection. Numerous reports have recently been published on the use of lasers for bone regeneration. If laser irradiation is found to promote the activation of bone metabolism, it might also be effective for periodontal treatment, peri-implantitis, and bone regeneration. Therefore, the present in vitro study aimed to elucidate the mechanisms underlying the effects of erbium-doped yttrium aluminum garnet (Er: YAG) laser irradiation on the bone using osteoblast-like cells. Methods: Osteoblast-like Saos 2 cells (5.0×104 cells) were seeded in 24-well plates. 24 hours after being seeded, the cells were subjected to 0.3 W, 0.6 W, and 2.0 W Er: YAG laser irradiation and then allowed to recover for 48 hours. The expression levels of bone metabolism-related factors alkaline phosphatase (ALP), bone sialoprotein (BSP), and osteoprotegerin (OPG) were then evaluated using reverse transcription–quantitative polymerase chain reaction and western blot analyses. Results: Saos 2 cells subjected to Er: YAG laser irradiation at 0.3 W, 0.6 W, and 2.0 W showed normal growth. When the Er: YAG laser irradiation and control groups were compared after 48 hours, increases were observed in ALP, BSP, and OPG gene and protein expression in the 2.0 W group. Similar results were obtained in the western blot analysis. Conclusion: These findings suggest that the Er: YAG laser irradiation of osteoblast-like cells is effective for activating bone metabolism factors.
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