Valenti Chiara, Pagano Stefano, Bozza Silvia, Ciurnella Enrico, Lomurno Giuseppe, Capobianco Benito, Coniglio Maddalena, Cianetti Stefano, Marinucci Lorella
Odontostomatological University Centre, Department of Medicine and Surgery, University of Perugia, Gambuli Square, 1, 06129 Perugia, PG, Italy.
Medical Microbiology Section, Department of Medicineand Surgery, University of Perugia, Gambuli Square, 1, 06129 Perugia, PG, Italy.
Materials (Basel). 2021 May 4;14(9):2387. doi: 10.3390/ma14092387.
The aim of this study is to investigate the Erbium:Yttrio-Aluminum-Granate (Er:YAG) laser photothermal and mechanical effects on cariogenic species concentration and on the microbial load composition of therapeutic cavities, in order to evaluate the possible micro-organisms reduction and make a comparison with manual and rotating conventional therapy (CT). A clinical trial was designed, including adults with active deep carious lesions on permanent teeth who were divided into two groups, i.e., control group and intervention group treated with CT and Er:YAG therapy, respectively. Before and after any conservative treatment, two oral samples were collected using a small sterile microbrush scrubbed within the base of the dentinal cavity tissue. The percentage of reduction and the colony-forming units (CFUs) count after Er:YAG and conventional treatments were compared for total microorganisms, including spp., spp., and spp. The microbial reduction varied from 90.2% to 100% and was significantly observed for total microorganisms and spp. ( < 0.05). The Er:YAG laser shows the potential for clinical applications, especially with paediatric and complicated patients, thanks to its minimally invasive properties and its effect on the reduction of microbial load.
钇铝石榴石(Er:YAG)激光对致龋菌浓度以及治疗性龋洞微生物负荷组成的光热和机械效应,以便评估可能的微生物减少情况,并与手动和旋转式传统治疗(CT)进行比较。设计了一项临床试验,纳入患有恒牙活动性深龋病变的成年人,他们被分为两组,即分别接受CT和Er:YAG治疗的对照组和干预组。在任何保守治疗之前和之后,使用一个小无菌微刷在牙本质腔组织底部刷洗收集两个口腔样本。比较了Er:YAG和传统治疗后包括 菌属、 菌属和 菌属在内的总微生物的减少百分比和菌落形成单位(CFU)计数。微生物减少率在90.2%至100%之间,总微生物和 菌属的减少情况显著( < 0.05)。由于其微创特性及其对减少微生物负荷的作用,Er:YAG激光显示出临床应用潜力,尤其是对于儿科患者和复杂病例。