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Antimicrobial Effect of Visible Light—Photoinactivation of Legionella rubrilucens by Irradiation at 450 470 and 620 nm

机译:可见光的抗菌作用-通过在450、470和620 nm处照射使军团杆菌退光

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摘要

Despite the high number of legionella infections, there are currently no convincing preventive measures. Photoinactivation with visible light is a promising new approach and the photoinactivation sensitivity properties of planktonic to 450, 470, and 620 nm irradiation were thus investigated and compared to existing 405 nm inactivation data for obtaining information on responsible endogenous photosensitizers. Legionella were streaked on agar plates and irradiated with different doses by light emitting diodes (LEDs) of different visible wavelengths. When irradiating bacterial samples with blue light of 450 nm, a 5-log reduction could be achieved by applying a dose of 300 J cm , whereas at 470 nm, a comparable reduction required about 500 J cm . For red irradiation at 620 nm, no inactivation could be observed, even at 500 J cm . The declining photoinactivation sensitivity with an increasing wavelength is consistent with the assumption of porphyrins and flavins being among the relevant photosensitizers. These results were obtained for , but there is reason to believe that its inactivation behavior is similar to that of pathogenic legionella species. Therefore, this photoinactivation might lead to new future concepts for legionella reduction and prevention in technical applications or even on or inside the human body.
机译:尽管军团菌感染数量很高,但目前尚无令人信服的预防措施。用可见光进行光灭活是一种有前途的新方法,因此对浮游生物对450、470和620 nm辐射的光灭活敏感性进行了研究,并将其与现有的405 nm灭活数据进行比较,以获得负责任的内源性光敏剂的信息。将军团菌涂在琼脂平板上,并用不同可见光波长的发光二极管(LED)照射不同剂量。当用450 nm的蓝光照射细菌样品时,通过施加300 J cm的剂量可以实现5 log的减少,而在470 nm处,相当的减少大约需要500 J cm。对于在620 nm处的红色照射,即使在500 J cm处也未观察到失活。随着波长的增加,光灭活敏感性下降,这与卟啉和黄素在相关光敏剂中的假设是一致的。这些结果是针对的而获得的,但是有理由相信其灭活行为与病原军团菌相似。因此,这种光灭活可能会导致减少和减少军团菌在技术应用甚至人体内部或内部的新概念。

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