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首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >Fast and effective inactivation of Bacillus atrophaeus endospores using light-activated derivatives of vitamin B2
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Fast and effective inactivation of Bacillus atrophaeus endospores using light-activated derivatives of vitamin B2

机译:使用光激活的维生素B2衍生物快速有效地灭活萎缩芽孢杆菌内生孢子

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Highly resistant endospores may cause severe problems in medicine as well as in the food and packaging industries. We found that bacterial endospores can be inactivated quickly with reactive oxygen species (ROS) that were generated by a new generation of flavin photosensitizers. Flavins like the natural compound vitamin B2 are already known to produce ROS but they show a poor antimicrobial photodynamic killing efficacy due to the lack of positive charges. Therefore we synthesized new flavin photosensitizers that have one (FLASH-01a) or eight (FLASH-07a) positive charges and can hence attach to the negatively charged surface of endospores. In this study we used standardized Bacillus atrophaeus endospores (ATCC 9372) as a biological surrogate model for a proof-of-concept study of photodynamic inactivation experiments using FLASH-01a and FLASH-07a. After incubation of spores with different flavin concentrations, the flavin derivatives were excited with blue light at a light dose of 70 J cm(-2). The inactivation of spores was investigated either in suspension or after attachment to polyethylene terephthalate (PET) surfaces. Incubation of spores suspended in Millipore water with 4 mM FLASH-01a for 10 seconds and irradiation with blue light for 10 seconds caused a biologically relevant decrease of spore survival of 3.5 log(10) orders. Using FLASH-07a under the same conditions we achieved a decrease of 4.4 log(10) orders. Immobilized spores on PET surfaces were efficiently killed with 7.0 log(10) orders using 8 mM FLASH-07a. The total treatment time (incubation + irradiation) was as short as 20 seconds. The results of this study show evidence that endospores can be fastly and effectively inactivated with new generations of flavin photosensitizers that may be useful for industrial or medical applications in the future.
机译:高抵抗力的内生孢子可能在医学以及食品和包装工业中引起严重问题。我们发现细菌内生孢子可以被新一代黄素光敏剂产生的活性氧(ROS)迅速灭活。像天然化合物维生素B2一样的黄素会产生ROS,但由于缺乏正电荷,它们显示出较差的抗菌光动力杀伤效果。因此,我们合成了新的黄素光敏剂,它们具有一个(FLASH-01a)或八个(FLASH-07a)正电荷,因此可以附着在内生孢子的带负电荷的表面上。在这项研究中,我们使用标准化的萎缩芽孢杆菌内生孢子(ATCC 9372)作为生物学替代模型,用于使用FLASH-01a和FLASH-07a进行光动力灭活实验的概念验证研究。用不同的黄素浓度孵育孢子后,以70 J cm(-2)的光剂量用蓝光激发黄素衍生物。在悬浮液中或附着到聚对苯二甲酸乙二酯(PET)表面后研究了孢子的失活。将悬浮在微孔水中的孢子与4 mM FLASH-01a一起孵育10秒钟,并用蓝光照射10秒钟,会导致生物学上相关的孢子存活降低3.5 log(10)个数量级。在相同条件下使用FLASH-07a,我们减少了4.4 log(10)个订单。使用8 mM FLASH-07a用7.0 log(10)命令有效杀死PET表面上的固定孢子。总处理时间(孵育+照射)短至20秒。这项研究的结果表明,可以使用新一代黄素光敏剂快速有效地灭活孢子,这些黄素光敏剂将来可用于工业或医学应用。

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