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222 纳米远紫外线 C 照射导致哺乳动物细胞的 DNA 损伤和转录变化。

222-Nanometer Far-UVC Exposure Results in DNA Damage and Transcriptional Changes to Mammalian Cells.

机构信息

Institute of Molecular and Cell Biology, Agency for Science, Technology and Research (A*STAR), 11 Biopolis Way, #02-02, Helios, Singapore 138667, Singapore.

Singapore Institute of Manufacturing Technology (SIMTech), Agency for Science, Technology and Research (A*STAR), 2 Fusionopolis Way, #08-04, Innovis, Singapore 138634, Singapore.

出版信息

Int J Mol Sci. 2022 Aug 14;23(16):9112. doi: 10.3390/ijms23169112.

Abstract

Ultraviolet (UV) germicidal tools have recently gained attention as a disinfection strategy against the COVID-19 pandemic, but the safety profile arising from their exposure has been controversial and impeded larger-scale implementation. We compare the emerging 222-nanometer far UVC and 277-nanometer UVC LED disinfection modules with the traditional UVC mercury lamp emitting at 254 nm to understand their effects on human retinal cell line ARPE-19 and HEK-A keratinocytes. Cells illuminated with 222-nanometer far UVC survived, while those treated with 254-nanometer and 277-nanometer wavelengths underwent apoptosis via the JNK/ATF2 pathway. However, cells exposed to 222-nanometer far UVC presented the highest degree of DNA damage as evidenced by yH2AX staining. Globally, these cells displayed transcriptional changes in cell-cycle and senescence pathways. Thus, the introduction of 222-nanometer far UVC lamps for disinfection purposes should be carefully considered and designed with the inherent dangers involved.

摘要

紫外线(UV)杀菌工具最近作为一种针对 COVID-19 大流行的消毒策略受到关注,但由于其暴露而产生的安全状况存在争议,阻碍了更大规模的实施。我们将新兴的 222 纳米远紫外线 C 和 277 纳米紫外线 C LED 消毒模块与传统的 254nm 紫外线 C 汞灯进行比较,以了解它们对人视网膜细胞系 ARPE-19 和 HEK-A 角质细胞的影响。用 222 纳米远紫外线 C 照射的细胞存活,而用 254 纳米和 277 纳米波长处理的细胞则通过 JNK/ATF2 途径发生细胞凋亡。然而,用 222 纳米远紫外线 C 照射的细胞表现出最高程度的 DNA 损伤,这一点可以通过 yH2AX 染色来证明。总的来说,这些细胞在细胞周期和衰老途径中表现出转录变化。因此,为消毒目的引入 222 纳米远紫外线 C 灯应谨慎考虑,并设计出涉及的固有危险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6340/9408858/0124649bcfa7/ijms-23-09112-g001.jpg

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