de Carvalho Bruna Marjorie Dias Frota, Garcia Bruna Albuquerque, Gomes Aghata Kelma Palacio, Alcantara Danielle Dourado, de Freitas Pontes Karina Matthes
Department of Prosthodontics, Christus University Center (UNICHRISTUS), João Adolfo Gurgel Street, 133 - Cocó, 60190-060, Fortaleza, CE, Brazil.
Department of Oral Biology, University of Florida (College of Dentistry), 1395 Center Drive, POBOX 100424 - 62610, Gainesville, FL, United States.
J Lasers Med Sci. 2023 Mar 14;14:e8. doi: 10.34172/jlms.2023.08. eCollection 2023.
Dentures, occlusal splints, surgical guides and orthodontic appliances are examples of acrylic resin devices made in dental laboratories, which must be disinfected and even sterilized before insertion into the oral cavity. This study evaluated the antimicrobial effect of photodynamic therapy (PDT) applied to acrylic resin specimens received from different laboratories. Three hundred standardized specimens were ordered from six randomly selected laboratories registered in the Council of Dentistry of Ceará (n=50). The PDT consisted in the association of 22 µM erythrosine, as a photosensitizer (P), and a 520-nm LED at 38 J/cm (L). The specimens of each laboratory were randomly distributed into five groups: positive control, sterilized with ethylene oxide; negative control, untreated (P-L-); erythrosine control, only stained (P+L-); LED control, only irradiated (P-L+); PDT (P+L+). Then, the specimens were individually sonicated in saline solution; the suspension was diluted, plated on culture mediums (blood agar, sabouraud dextrose agar and a non-selective chromogenic agar), and incubated for 48 hours at 37°C. Colony-forming-unit (CFU) counts were done and statistical tests of Kruskal-Wallis/Dunn were carried out. The specimens from all laboratories were contaminated with bacteria and yeasts. , , , spp., spp. were identified. The PDT significantly reduced CFU counts (<0.0001), compared to P-L-. PDT was able to effectively decontaminate the acrylic resin specimens provided from dental laboratories.
假牙、咬合夹板、手术导板和正畸矫治器是牙科实验室制作的丙烯酸树脂装置的实例,在插入口腔之前必须进行消毒甚至灭菌。本研究评估了光动力疗法(PDT)对从不同实验室收到的丙烯酸树脂标本的抗菌效果。从在塞阿拉州牙科委员会注册的六个随机选择的实验室订购了300个标准化标本(n = 50)。PDT由22 μM赤藓红作为光敏剂(P)和波长520 nm、能量密度38 J/cm²的发光二极管(L)组成。每个实验室的标本被随机分为五组:阳性对照,用环氧乙烷灭菌;阴性对照,未处理(P-L-);赤藓红对照,仅染色(P+L-);发光二极管对照,仅照射(P-L+);PDT组(P+L+)。然后,将标本分别在盐溶液中超声处理;将悬浮液稀释,接种在培养基(血琼脂、沙氏葡萄糖琼脂和一种非选择性显色琼脂)上,并在37°C下孵育48小时。进行菌落形成单位(CFU)计数,并进行Kruskal-Wallis/Dunn统计检验。所有实验室的标本都被细菌和酵母菌污染。鉴定出了……菌属、……菌属。与P-L-相比,PDT显著降低了CFU计数(<0.0001)。PDT能够有效净化牙科实验室提供的丙烯酸树脂标本。