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Antimicrobial Capacity and Surface Alterations Using Photodynamic Therapy and Light Activated Disinfection on Polymer-Infiltrated Ceramic Material Contaminated with Periodontal Bacteria

机译:使用光动力治疗和光活化消毒对牙周细菌污染的聚合物渗透陶瓷材料的抗菌能力和表面改变

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摘要

This study determined the antimicrobial efficiency of light-activated disinfection (LAD) and photodynamic therapy (PDT) on polymer-infiltrated ceramic network (PICN) material contaminated with three periodontal bacteria and explored if PDT and LAD cause PICN surface alterations. Sixty PICN discs were contaminated with Tannerella forsythia, Porphyromonas gingivalis, and Treponema denticola and randomly divided into five groups (n = 12 samples/each) according to the treatment groups: Group PDT—PDT (630 ± 10 nm diode laser) with methylene blue; Group DL—808 nm diode laser in contact mode without photosensitizer; Group MB–methylene blue without light application; Group CHX—0.12% chlorhexidine digluconate solution and; Group NT—no treatment. Each disc was then placed in tubes containing phosphate buffered saline (PBS) and vortexed for 30 s to remove the remaining bacteria from the discs. A total of 10× serial dilutions were performed followed by plating of 30 μL of suspension on Brucella agar plates. The colony forming units (CFU) were calculated after 72 h. PICN discs with the attached biofilms were used for confocal microscopy investigation for live/dead bacterial viability. A random single sample from each group was selected to study the bacterial adherence and topographical alterations on PICN discs under scanning electron microscope (SEM). The PDT group showed higher reduction for each bacterial species and total counts of bacteria assessed followed by the DL group (p < 0.05). When compared with MB group, the two laser groups were significantly superior (p < 0.05). The MB group did not show significant differences for any bacteria when compared to NT. The bacteria with the CHX group and DL groups appeared dead with few areas of surviving green stained bacteria. The PDT group showed the highest dead cell count (p < 0.05). PDT and DL groups indicate no significant changes on the surface compared to the sterile PICN discs on visual assessment. Photodynamic therapy produced superior periodontal bacteria reduction over the surface of PICN surface. PDT group showed higher reduction for each bacterial species and total counts of bacteria assessed followed by the DL group. Both PDT and DL treatment strategies are effective without producing surface alterations on PICN.
机译:该研究确定了用三个牙周细菌污染的聚合物渗透陶瓷网络(PICN)材料上的光活性消毒(LAD)和光动力疗法(PDT)的抗微生物效率,并探索了PDT和LAD引起PICN表面改变。六十粒状圆盘污染了坦恩斯菌,卟啉尼斯牙龈和蛋白质牙科肽,并根据治疗组随机分为五组(n = 12个样品/每种):PDT-PDT(630±10nm二极管激光)与亚甲基蓝色; DL-808 NM二极管激光器在没有光敏剂的接触模式下;小组MB-亚甲基蓝色没有光应用;群CHX-0.12%氯己定Digluconate溶液和;组NT-NO治疗。然后将每个盘置于含有磷酸盐缓冲盐水(PBS)的管中,并涡旋30μm以从盘中除去剩余的细菌。进行总共10倍系列稀释液,然后在布鲁氏菌琼脂平板上镀30μl悬浮液。在72小时后计算菌落形成单元(CFU)。使用附着的生物膜的PICN盘用于共聚焦显微镜调查,用于活/死泡活力。选择来自每组的随机单个样品,以研究扫描电子显微镜(SEM)下的PICN盘上的细菌粘附和地形改变。 PDT组对每种细菌种类的降低表现出更高的减少,并且评估的细菌总数随后是DL组(P <0.05)。与MB组相比,两种激光基团显着优化(P <0.05)。与NT相比,MB组对任何细菌没有显示出显着差异。具有CHX组和DL组的细菌似乎死于少量生存的绿色染色细菌。 PDT组显示最高的死池计数(P <0.05)。与视觉评估的无菌PICN光盘相比,PDT和DL组在表面上没有显着变化。光动力疗法在PICN表面表面产生了卓越的牙周细菌。 PDT组对每种细菌种类的减少表现出更高的减少,并且评估的细菌总数随后是DL组。 PDT和DL治疗策略都有效而不产生PICN的表面改变。

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