Ivanova Elena P, Nguyen The Hong Phong, Linklater Denver P, Le Phuc H, Vilagosh Zoltan, Perera Palalle G Tharushi, Appadoo Dominique R T, Vongsvivut Jitraporn, Sharma Tanavi, Leeming Michael G, Williamson Nicholas A, Hanssen Eric, Dekiwadia Chaitali, Tobin Mark J, Juodkazis Saulius, Croft Rodney J
STEM College, School of Science, RMIT University, Melbourne, Victoria 3000, Australia.
Biomedical Engineering, Graeme Clark Institute, The University of Melbourne, Parkville, Victoria 3010, Australia.
ACS Omega. 2024 Dec 5;9(50):49878-49886. doi: 10.1021/acsomega.4c08710. eCollection 2024 Dec 17.
The biological effects of electromagnetic field (EMF) irradiation in the terahertz (THz) range remain ambiguous, despite numerous studies that have been conducted. In this paper, the metabolic response of K 12 to EMF irradiation was examined using a 1.0 W m incident synchrotron source (SS) in the range of 0.5-18.0 THz for over 90 min of continuous exposure at 25 °C. This continuous SS THz exposure induced periodic decreases in the cell growth after 10, 20, and 40 min of exposure compared to a time-matched control; however, the number of viable cells thereafter grew. The physiological status of treated cells immediately after exposure was assessed by using the direct plate counting technique and electron microscopy. Analysis of scanning electron microscopy (SEM) and high-resolution cryogenic transmission electron (cryo-TEM) micrographs showed that approximately 20% of the SS THz-exposed cells exhibited a deformed outer membrane, membrane perturbations, and leakage of cytosol. The proteome changes in cells after 18 h postexposure were associated with cellular response to plasma membrane regulation including phospholipid biosynthetic process and osmotic stress. The results of this study highlighted that cells can promptly activate the fundamental mechanisms in response to prolonged exposure to THz radiation that are evolutionarily developed to withstand other environmental stressors.
尽管已经进行了大量研究,但太赫兹(THz)波段的电磁场(EMF)辐射的生物效应仍不明确。在本文中,使用1.0 W/m的入射同步辐射源(SS)在0.5 - 18.0 THz范围内对K12进行EMF辐射,在25°C下连续暴露90多分钟,检测其代谢反应。与时间匹配的对照组相比,这种连续的SS太赫兹暴露在暴露10、20和40分钟后导致细胞生长周期性下降;然而,此后活细胞数量增加。通过直接平板计数技术和电子显微镜评估暴露后立即处理的细胞的生理状态。扫描电子显微镜(SEM)和高分辨率低温透射电子显微镜(cryo-TEM)图像分析表明,约20%的SS太赫兹暴露细胞表现出外膜变形、膜扰动和细胞质渗漏。暴露后18小时细胞中的蛋白质组变化与细胞对质膜调节的反应有关,包括磷脂生物合成过程和渗透应激。这项研究的结果突出表明,细胞可以迅速激活基本机制,以应对长时间暴露于太赫兹辐射,这些机制是在进化过程中发展起来以抵御其他环境压力源的。