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利用近红外亚皮秒光纤激光实现病毒的选择性光灭活的光子学方法。

Photonic approach to the selective inactivation of viruses with a near-infrared subpicosecond fiber laser.

机构信息

Arizona State University, Department of Physics, P.O. Box 871504, Tempe, Arizona 85287, USA.

出版信息

J Biomed Opt. 2009 Nov-Dec;14(6):064042. doi: 10.1117/1.3275477.

Abstract

We report a photonic approach for selective inactivation of viruses with a near-infrared subpicosecond laser. We demonstrate that this method can selectively inactivate viral particles ranging from nonpathogenic viruses such as the M13 bacteriophage and the tobacco mosaic virus to pathogenic viruses such as the human papillomavirus and the human immunodeficiency virus (HIV). At the same time, sensitive materials such as human Jurkat T cells, human red blood cells, and mouse dendritic cells remain unharmed. The laser technology targets the global mechanical properties of the viral protein shell, making it relatively insensitive to the local genetic mutation in the target viruses. As a result, the approach can inactivate both the wild and mutated strains of viruses. This intriguing advantage is particularly important in the treatment of diseases involving rapidly mutating viral species such as HIV. Our photonic approach could be used for the disinfection of viral pathogens in blood products and for the treatment of blood-borne viral diseases in the clinic.

摘要

我们报告了一种用光的方法,利用近红外亚皮秒激光选择性地灭活病毒。我们证明,这种方法可以选择性地灭活从非致病性病毒(如 M13 噬菌体和烟草花叶病毒)到致病性病毒(如人乳头瘤病毒和人类免疫缺陷病毒)的病毒颗粒。同时,敏感材料如人 Jurkat T 细胞、人红细胞和小鼠树突状细胞保持完好无损。激光技术针对病毒蛋白壳的整体力学特性,使其对目标病毒的局部遗传突变相对不敏感。因此,该方法可以灭活野生和突变株的病毒。这一有趣的优势在治疗涉及快速突变病毒物种的疾病(如 HIV)时尤为重要。我们的光子方法可用于血液制品中病毒病原体的消毒,以及临床治疗血源病毒疾病。

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