Muniz Ana Bessa, Vegian Mariana Raquel da Cruz, Pereira Leite Lady Daiane, da Silva Diego Morais, Moreira Milhan Noala Vicensoto, Kostov Konstantin Georgiev, Koga-Ito Cristiane Yumi
Department of Environment Engineering and Sciences Applied to Oral Health Graduate Program, São José dos Campos Institute of Science and Technology, São Paulo State University (UNESP), São José dos Campos 12247-016, SP, Brazil.
Department of Physics, Faculty of Engineering in Guaratinguetá, São Paulo State University (UNESP), Guaratinguetá 12516-410, SP, Brazil.
Biomedicines. 2023 May 9;11(5):1401. doi: 10.3390/biomedicines11051401.
The failure of endodontic treatment is frequently associated with the presence of remaining microorganisms, mainly due to the difficulty of eliminating the biofilm and the limitation of conventional irrigation solutions. Non-thermal atmospheric pressure plasma (NTPP) has been suggested for many applications in the medical field and can be applied directly to biological surfaces or indirectly through activated liquids. This literature review aims to evaluate the potential of NTPP application in Endodontics. A search in the databases Lilacs, Pubmed, and Ebsco was performed. Seventeen manuscripts published between 2007 and 2022 that followed our established inclusion criteria were found. The selected manuscripts evaluated the use of NTPP regarding its antimicrobial activity, in the direct exposure and indirect method, i.e., plasma-activated liquid. Of these, 15 used direct exposure. Different parameters, such as working gas and distance from the apparatus to the substrate, were evaluated in vitro and ex vivo. NTPP showed a disinfection property against important endodontic microorganisms, mainly and The antimicrobial potential was dependent on plasma exposure time, with the highest antimicrobial effects over eight minutes of exposure. Interestingly, the association of NTPP and conventional antimicrobial solutions, in general, was shown to be more effective than both treatments separately. This association showed antimicrobial results with a short plasma exposure time, what could be interesting in clinical practice. However, considering the lack of standardization of the direct exposure parameters and few studies about plasma-activated liquids, more studies in the area for endodontic purposes are still required.
牙髓治疗失败常常与残留微生物的存在有关,这主要是由于消除生物膜存在困难以及传统冲洗液存在局限性。非热大气压等离子体(NTPP)已被建议用于医学领域的多种应用,并且可以直接应用于生物表面或通过活化液体间接应用。这篇文献综述旨在评估NTPP在牙髓病学中的应用潜力。我们在Lilacs、Pubmed和Ebsco数据库中进行了检索。发现了2007年至2022年间发表的17篇符合我们既定纳入标准的手稿。所选手稿评估了NTPP在直接暴露和间接方法(即等离子体活化液体)方面的抗菌活性。其中,15篇使用了直接暴露。在体外和离体实验中评估了不同参数,如工作气体和从设备到底物的距离。NTPP对重要的牙髓微生物显示出消毒特性,主要是……和……抗菌潜力取决于等离子体暴露时间,暴露八分钟以上具有最高的抗菌效果。有趣的是,一般来说,NTPP与传统抗菌溶液联合使用比单独使用两种治疗方法更有效。这种联合使用在短时间等离子体暴露时显示出抗菌效果,这在临床实践中可能很有意义。然而,考虑到直接暴露参数缺乏标准化以及关于等离子体活化液体的研究较少,该领域仍需要更多针对牙髓病学目的的研究。