Simultaneous photoablative and photodynamic 810-nm diode laser therapy as an adjunct to non-surgical periodontal treatment: an in-vitro study.

Q3 Medicine Minerva stomatologica Pub Date : 2020-02-01 DOI:10.23736/S0026-4970.19.04233-X
Andrea Amaroli, Ramona Barbieri, Antonio Signore, Anna Marchese, Steven Parker, Nicola De Angelis, Stefano Benedicenti
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引用次数: 6

Abstract

Background: The use of lasers at different wavelengths has been proposed in combination with conventional non-surgical periodontal treatment in order to improve the clinical outcome of periodontal disease. However, the clinical use of laser photonic energy is still the subject of research and debate because the antibacterial activity of the laser is dependent upon method, laser parameters, quantity of bacteria, species selected and photosensitizers used.

Methods: We evaluated the in-vitro bactericidal activity of 810 nm diode-laser irradiation in simultaneous photoablative and photodynamic mode against the major pathogenic bacterial organisms associated with periodontal inflammation and disease. We used indocyanine green as photosensitizer and the high-energy density of 161.7 J/cm2 or 215.0 J/cm2 for the photoablative-photodynamic irradiation.

Results: The bacteria were drastically affected by the 215.0 J/cm2 irradiation in the presence of indocyanine green. In fact, the number of Porphyromonas gingivalis and Prevotella intermedia was reduced by 99.9% (P<0.001), while the number of Fusobacterium nucleatum, Aggregatibacter actinomycetemcomitans, Tannerella forsythia and Actinomyces viscosus decremented by 83.3% (P<0.01), 86.8% (P<0.05), 75% (P<0.01) and 78.7% (P<0.001), respectively. P. gingivalis and P. intermedia were the only bacteria that were sensitive to the treatment with indocyanine green dye and 161.7 J/cm2 of laser irradiation (P<0.001).

Conclusions: Our preliminary in-vitro data suggest that simultaneous photoablative-photodynamic irradiation could be a promising therapy against a wide range of bacteria involved in periodontal disease. We believe that further additional in-vivo investigation is necessary, to enable a more complete picture of effectiveness within a clinical setting to be established. In addition, the use of a simultaneous photoablative-photodynamic therapy is suggested to reduce treatment time, without compromising the efficacy against the periodontal pathogens.

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同时光消融和光动力810纳米二极管激光治疗作为非手术牙周治疗的辅助:一项体外研究。
背景:为了改善牙周病的临床疗效,已提出将不同波长的激光与常规的牙周非手术治疗相结合。然而,激光光子能量的临床应用仍然是研究和争论的主题,因为激光的抗菌活性取决于方法、激光参数、细菌数量、选择的种类和使用的光敏剂。方法:观察810 nm二极管激光在光消融和光动力同时照射下对牙周炎症和牙周疾病相关的主要病原菌的体外杀菌活性。采用吲哚菁绿作为光敏剂,分别以161.7 J/cm2或215.0 J/cm2的高能密度进行光烧蚀-光动力辐照。结果:吲哚菁绿存在下,215.0 J/cm2辐照对细菌有明显影响。事实上,牙龈卟啉单胞菌和中间普雷沃氏菌的数量减少了99.9%。结论:我们的初步体外实验数据表明,同时光蚀-光动力照射可能是一种有希望的治疗牙周病细菌的方法。我们认为,进一步的体内研究是必要的,以便在临床环境中建立更完整的有效性。此外,建议同时使用光消融-光动力治疗,以减少治疗时间,而不影响对牙周病原体的疗效。
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来源期刊
Minerva stomatologica
Minerva stomatologica DENTISTRY, ORAL SURGERY & MEDICINE-
CiteScore
1.50
自引率
0.00%
发文量
0
期刊介绍: The journal Minerva Stomatologica publishes scientific papers on dentistry and maxillo-facial surgery. Manuscripts may be submitted in the form of editorials, original articles, review articles, case reports, therapeutical notes, special articles and letters to the Editor. Manuscripts are expected to comply with the instructions to authors which conform to the Uniform Requirements for Manuscripts Submitted to Biomedical Editors by the International Committee of Medical Journal Editors (www.icmje.org). Articles not conforming to international standards will not be considered for acceptance.
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