Mohamed Abdelgawad Latifa, Hassan Nghnughi Mariam, El Rouby Dalia, Abdelgwad Marwa
Medical Applications of Lasers Department, National Institute of Laser Enhanced Science (NILES), Cairo University, Giza, Egypt.
Oral Pathology Department, Faculty of Oral and Dental Medicine, Cairo University, Giza, Egypt.
J Lasers Med Sci. 2024 Oct 23;15:e51. doi: 10.34172/jlms.2024.51. eCollection 2024.
Photobiomodulation (PBM) is beneficial to biological tissues; depending on the optical dose that is absorbed by tissues, it can function as a biostimulative, analgesic, and anti-inflammatory mediator. Thus, the current research aimed to assess the impacts of PBM and Calcium aluminosilicate-based material on direct pulp capping (DPC) of dogs' permanent teeth through histological analysis. To study DPC of dogs' teeth, we separated 24 canines and premolars obtained from mature, healthy mongrel dogs into four equal groups: group 1, which served as the control (exposed pulp was covered with a sterile polytetrafluoroethylene, Teflon tape); group 2, which received PBM treatment using a 980 nm diode laser with a 100 mw output power for one minute; group 3: Calcium aluminosilicate-based material; group 4: Calcium aluminosilicate+PBM. In accordance with the assessment period, each group was divided into three equal subcategories: (A) 1 week; (B) 2 months; (C) 3 months. The teeth were evaluated histologically for inflammatory response and dentine bridge formation. Statistical analysis detected that there was a significant difference between PBM, Calcium aluminosilicate cement, and the combination group of PBM and Calcium aluminosilicate related to the control group in variant evaluation periods regarding the inflammatory response and dentine bridge thickness through the histological analysis. In relation to the inflammatory response after one week, the combined group (Calcium silicate cement+PBM) exhibited a significantly decreased intensity of inflammation compared to other groups at an identical time. As for dentin bridge creation, the PBM+calcium aluminosilicate group detected thicker dentine bridge creation at three months than other studied groups. Combined with calcium aluminosilicate-based material, PBM using a 980 nm diode laser with output power of 100 mw for one minute decreased the initial inflammatory response and enhanced a complete thick dentine bridge formation.
光生物调节作用(PBM)对生物组织有益;根据组织吸收的光剂量,它可作为生物刺激、镇痛和抗炎介质发挥作用。因此,当前研究旨在通过组织学分析评估PBM和硅酸钙基材料对犬恒牙直接盖髓术(DPC)的影响。为研究犬牙的直接盖髓术,我们将从成熟健康杂种犬获取的24颗犬齿和前磨牙分为四组,每组数量相等:第1组作为对照组(暴露的牙髓用无菌聚四氟乙烯,即特氟龙胶带覆盖);第2组,使用输出功率为100毫瓦的980纳米二极管激光进行1分钟的PBM治疗;第3组:硅酸钙基材料;第4组:硅酸钙+PBM。根据评估期,每组又分为三个相等的子类别:(A)1周;(B)2个月;(C)3个月。对牙齿进行组织学评估,观察炎症反应和牙本质桥形成情况。统计分析发现,通过组织学分析,在不同评估期,PBM、硅酸钙水泥以及PBM与硅酸钙的组合组与对照组在炎症反应和牙本质桥厚度方面存在显著差异。关于1周后的炎症反应,与其他组相比,联合组(硅酸钙水泥+PBM)在同一时间的炎症强度显著降低。至于牙本质桥的形成,PBM+硅酸钙组在3个月时检测到比其他研究组更厚的牙本质桥形成。使用输出功率为100毫瓦的980纳米二极管激光进行1分钟的PBM与硅酸钙基材料联合使用,可降低初始炎症反应并促进完整厚牙本质桥的形成。