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The effect of irradiation wavelengths and the crystal structures of titanium dioxide on the formation of singlet oxygen for bacterial killing

机译:辐照波长和二氧化钛晶体结构对单线态氧形成细菌杀灭的影响

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摘要

Safe and effective methods for oral bacterial disinfection have been desired, since bacteria cause many infectious diseases such as dental caries, periodontal disease, and endodontic infections. Singlet oxygen (1O2) is attractive, because it is toxic to prokaryotic cells, but not to eukaryotic cells. We selected irradiation of titanium dioxide (TiO2) as a source of 1O2, because it has been used in sunscreens and cosmetic products without complications. In order to establish the optimal oral photodynamic therapy conditions, we measured the rate of 1O2 formation from the irradiated anatase or rutile forms of TiO2 using 365 or 405 nm lamps. The rate of 1O2 formation decreased in the following order: anatase, 365 nm > rutile, 405 nm > rutile, 365 nm > anatase, 405 nm. Therefore, we concluded that irradiation of the rutile form of TiO2 by a 405 nm lamp is the most favorable photodynamic therapy condition, because visible light is more desirable than UV light from the viewpoint of patient safety. We also confirmed that there was no direct HO formation from the irradiated TiO2.
机译:由于细菌引起许多传染病,例如龋齿,牙周病和牙髓感染,因此需要用于口腔细菌消毒的安全有效的方法。单线态氧( 1 O2)具有吸引力,因为它对原核细胞有毒,但对真核细胞无毒。我们选择辐照二氧化钛(TiO2)作为 1 O2的来源,因为它已被用于防晒霜和化妆品中,没有任何复杂性。为了建立最佳的口服光动力疗法条件,我们使用365或405 nm灯测量了锐钛矿或金红石形式的TiO2辐射后 1 O2形成的速率。 1 O2的形成速率按以下顺序降低:锐钛矿型365 nm>金红石型,405 nm>金红石型365 nm>锐钛矿型405 nm。因此,我们得出结论认为,用405 nm灯照射金红石型TiO2是最有利的光动力治疗条件,因为从患者安全的角度来看,可见光比UV光更可取。我们还证实,经辐照的TiO2没有直接形成HO

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