Differentiation of DNA or membrane damage of the cells in disinfection by flow cytometry

孢子 碘化丙啶 染色 流式细胞术 化学 污渍 核酸 DNA DNA损伤 微生物学 荧光染色 色谱法 分子生物学 生物 生物化学 细胞凋亡 有机化学 遗传学 程序性细胞死亡
作者
Ruihua Cao,Qiqi Wan,Xiangqian Xu,Shiqi Tian,Gehui Wu,Jingyi Wang,Tinglin Huang,Gang Wen
出处
期刊:Journal of Hazardous Materials [Elsevier]
卷期号:435: 128924-128924 被引量:26
标识
DOI:10.1016/j.jhazmat.2022.128924
摘要

Recently, the viabilities changes of fungal spores in the water supply system during different disinfection processes have been revealed. SYBR Green I (SG), a nucleic acid stain, its fluorescence intensity is correlated with the amount of double-stranded DNA. This study established a new method through successive SG-SG-PI staining (PI: Propidium Iodide) with flow cytometry (FCM). It could successfully distinguish DNA damage and membrane damage of fungal spores, clearly elucidating the intrinsic disinfection mechanism during the chemical disinfection. This method was briefly described as follows: firstly, (1) the fungal spores were stained with SG and washed by centrifugation; and then, (2) the washed spores were treated with disinfectants and terminated; after that, (3) the disinfected spores were re-stained with SG and analyzed by FCM; finally, (4) the SG re-stained spores were stained with PI and analyzed by FCM. The percentages of spores with DNA damage and membrane damage were determined by the fluorescence intensity obtained from steps (3) and (4), respectively. The repeatability and applicability of this developed method were confirmed. It was further applied to explore the inactivation mechanism during chlorine-based disinfection, and results demonstrated that chloramine attacked the DNA more seriously than the membrane, while chlorine and chlorine dioxide worked in a reverse way.
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