INRS-Centre Énergie Matériaux Télécommunications, Québec, Canada.
INRS-Centre Institut Armand-Frappier, Québec, Canada.
J Biophotonics. 2020 Feb;13(2):e201900001. doi: 10.1002/jbio.201900001. Epub 2019 Nov 20.
Irradiation of femtosecond (fs) pulse lasers in the visible and near-infrared ranges have been proposed as a promising approach for inactivating viruses. However, in order to achieve significant virus inactivation, past works have required relatively long irradiation times (1 hour or longer), even for small volumes. Given its advantages compared with other techniques, there is an urgent need to shorten the time required to inactivate viruses using fs laser technology. In this study, we investigate the inactivation of purified M13 bacteriophage in phosphate-buffered saline with large active volume (1 cm ), and short exposure time (several minutes), using lasers with 20 mJ/pulse energy at various wavelengths (800, 400 nm or both 800 and 400 nm combined). For an exposure time of 15 and 2 minute, the use of a 400 nm wavelength laser results in a high load reduction of 5.8 ± 0.3 and 2.9 ± 0.15, respectively, on the log scale of viability. We show that virus inactivation using the 400 nm laser is much more efficient compared with that using an 800 nm laser, or the simultaneous irradiation of 400 and 800 nm lasers. Higher pathogen inactivation is observed for lasers with shorter pulse duration, whereas at longer pulse durations, the inactivation is reduced. For millijoule-energy fs laser irradiation, the M13 bacteriophage inactivation, via the reduction of the functionality of M13 bacteriophages, is accompanied with relatively small amounts of genetic damage.
飞秒(fs)脉冲激光在可见和近红外范围内的辐照已被提出作为一种有前途的病毒失活动力学方法。然而,为了实现显著的病毒失活,过去的工作需要相对较长的辐照时间(1 小时或更长时间),即使对于小体积也是如此。鉴于与其他技术相比具有优势,因此迫切需要使用 fs 激光技术缩短病毒失活所需的时间。在这项研究中,我们研究了使用具有 20mJ/脉冲能量的各种波长(800nm、400nm 或两者的 800nm 和 400nm 组合)的激光,在大的活性体积(1cm3)和短的暴露时间(几分钟)下,对磷酸盐缓冲盐水(PBS)中的纯化 M13 噬菌体进行失活。对于 15 和 2 分钟的暴露时间,使用 400nm 波长的激光分别导致对数活度的 5.8±0.3 和 2.9±0.15 的高负载减少。我们表明,与使用 800nm 激光或同时辐照 400nm 和 800nm 激光相比,使用 400nm 激光进行病毒失活的效率要高得多。对于较短的脉冲持续时间的激光,观察到更高的病原体失活,而对于较长的脉冲持续时间,失活减少。对于毫焦能量的 fs 激光辐照,M13 噬菌体的失活,通过 M13 噬菌体的功能降低,伴随着相对较小量的遗传损伤。