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暴露于“SG-III”原型激光设施发射的特定且强烈的电磁辐射的细胞的转录组分析。

Transcriptome profiling of cells exposed to particular and intense electromagnetic radiation emitted by the "SG-III" prototype laser facility.

机构信息

College of Materials Science and Engineering, Sichuan University, Chengdu, 610065, Sichuan, China.

Department of Dermatology, West China Hospital, Sichuan University, Chengdu, 610041, China.

出版信息

Sci Rep. 2021 Jan 21;11(1):2017. doi: 10.1038/s41598-021-81642-5.

Abstract

The experiment of inertial confinement fusion by the "ShengGuang (SG)-III" prototype laser facility is a transient and extreme reaction process within several nanoseconds, which could form a very complicated and intense electromagnetic field around the target chamber of the facility and may lead to harmful effect on people around. In particular, the biological effects arising from such specific environment field could hardly be ignored and have never been investigated yet, and thus, we reported on the investigation of the biological effects of radiation on HaCat cells and PC12 cells to preliminarily assess the biological safety of the target range of the "SG-III" prototype laser facility. The viability revealed that the damage of cells was dose-dependent. Then we compared the transcriptomes of exposed and unexposed PC12 cells by RNA-Seq analysis based on Illumina Novaseq 6000 platform and found that most significantly differentially expressed genes with corresponding Gene Ontology terms and pathways were strongly involved in proliferation, transformation, necrosis, inflammation response, apoptosis and DNA damage. Furthermore, we find increase in the levels of several proteins responsible for cell-cycle regulation and tumor suppression, suggesting that pathways or mechanisms regarding DNA damage repair was are quickly activated. It was found that "SG-III" prototype radiation could induce DNA damage and promote apoptotic necrosis.

摘要

“神光-Ⅲ”原型激光装置惯性约束聚变实验是一个在数纳秒内发生的瞬态和极端反应过程,它可以在装置的靶室周围形成一个非常复杂和强烈的电磁场,可能对周围的人造成有害影响。特别是,由于这种特殊环境场产生的生物效应很难被忽视,但迄今为止尚未进行研究,因此,我们报告了辐射对 HaCat 细胞和 PC12 细胞的生物学效应的研究,以初步评估“神光-Ⅲ”原型激光装置的靶场的生物安全性。细胞活力表明细胞损伤与剂量有关。然后,我们通过基于 Illumina Novaseq 6000 平台的 RNA-Seq 分析比较了暴露和未暴露的 PC12 细胞的转录组,发现具有相应基因本体论术语和途径的大多数差异表达基因强烈参与增殖、转化、坏死、炎症反应、细胞凋亡和 DNA 损伤。此外,我们发现负责细胞周期调控和肿瘤抑制的几种蛋白质水平升高,表明 DNA 损伤修复的途径或机制被迅速激活。研究发现,“神光-Ⅲ”原型辐射可以诱导 DNA 损伤并促进细胞凋亡坏死。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/225d/7820428/00ed9ab49faf/41598_2021_81642_Fig1_HTML.jpg

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