Effectiveness of 650 nm red laser photobiomodulation therapy to accelerate wound healing post tooth extraction

S. D. Astuti, R. Nashichah, P. Widiyanti, E. M. Setiawatie, M. S. Amir, A. Apsari, .. Widyastuti, E. Hermanto, Y. Susilo, A. K. Yaqubi, D.Z. I. Nurdin, N. Anuar
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Abstract

After tooth extraction, there can be consequences involving injury to the tissue surrounding the extracted tooth, which may lead to severe problems such as inflammation and infection. The wound healing process comprises inflammation, proliferation, and remodeling phases. Photobiomodulation is a therapy form that utilizes the interaction of a light source with tissue. This interaction can activate an increase in Adenosine Triphosphate (ATP), which subsequently triggers a chain reaction leading to the creation of new blood vessels and an increase in the number of fibroblasts. This study used a red laser light source with a power of 3.32 ± 0.01 mW, delivering a dose of 3.5 J to patients for extraction indications. The parameters observed included Interleukin 1_ (IL-1_), Prostaglandin E2 (PGE2), Human Beta defensin 2 (HBD2), and Gingival Index (GI). The results of testing saliva samples using the enzyme-linked immunosorbent test (ELISA) for the parameters IL-1_, PGE2, and HBD2 show a significant influence between the control and therapy groups. Meanwhile, GI revealed a significant influence of therapy on the wound-healing process. Using the Mann-Whitney U test, on day 1, the p-value was found to be 0.32, indicating no significant deference between the control and therapy groups. However, on the third day after the therapy was administered, the p-value was obtained as 0.01, signifying a significant deference between the control and therapy groups. On day 5, a p-value of 0.034 was obtained, signifying a significant deference between the control and therapy groups. Based on the research results, it can be observed that there is a decrease in the values of IL-1_, PGE2, HBD2, and GI. This indicates that local immune cells, including resident macrophages, are activated by pro-inflammatory mediators released in response to injury, and they play an essential role in accelerating wound healing.
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650 纳米红色激光光生物调节疗法对加速拔牙后伤口愈合的效果
拔牙后,拔牙周围的组织可能会受到损伤,从而导致炎症和感染等严重问题。伤口愈合过程包括炎症、增殖和重塑阶段。光生物调节是一种利用光源与组织相互作用的治疗方式。这种相互作用可激活三磷酸腺苷(ATP)的增加,进而引发连锁反应,导致新血管的生成和成纤维细胞数量的增加。这项研究使用了功率为 3.32 ± 0.01 mW 的红色激光光源,为患者提供 3.5 J 的剂量,用于提取适应症。观察到的参数包括白细胞介素 1_ (IL-1_)、前列腺素 E2 (PGE2)、人β防御素 2 (HBD2)和牙龈指数 (GI)。使用酶联免疫吸附试验(ELISA)对唾液样本中的 IL-1_、PGE2 和 HBD2 参数进行检测的结果显示,对照组和治疗组之间存在显著影响。同时,消化道指标显示治疗对伤口愈合过程有显著影响。通过 Mann-Whitney U 检验,发现在第 1 天,P 值为 0.32,表明对照组和治疗组之间没有显著差异。但在治疗后的第三天,P 值为 0.01,表明对照组和治疗组之间存在显著差异。第 5 天,P 值为 0.034,表明对照组和治疗组之间存在显著差异。根据研究结果可以看出,IL-1_、PGE2、HBD2 和 GI 的值都有所下降。这表明,包括常驻巨噬细胞在内的局部免疫细胞会被损伤时释放的促炎介质激活,它们在加速伤口愈合方面发挥着重要作用。
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来源期刊
Biomedical Photonics
Biomedical Photonics Medicine-Surgery
CiteScore
1.80
自引率
0.00%
发文量
19
审稿时长
8 weeks
期刊介绍: The main goal of the journal – to promote the development of Russian biomedical photonics and implementation of its advances into medical practice. The primary objectives: - Presentation of up-to-date results of scientific and in research and scientific and practical (clinical and experimental) activity in the field of biomedical photonics. - Development of united Russian media for integration of knowledge and experience of scientists and practitioners in this field. - Distribution of best practices in laser medicine to regions. - Keeping the clinicians informed about new methods and devices for laser medicine - Approval of investigations of Ph.D candidates and applicants.
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