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抗氧化防御基因缺陷的 B 株的氧化应激的流式细胞分析。

Flow Cytometric Analysis of Oxidative Stress in B Strains Deficient in Genes of the Antioxidant Defence.

机构信息

Laboratory of Cytomics, Joint Research Unit CIPF-UVEG, University of Valencia, 46010 Valencia, Spain.

Flow Cytometry Unit, IIS INCLIVA, Fundación Investigación Hospital Clínico Valencia, 46010 Valencia, Spain.

出版信息

Int J Mol Sci. 2022 Jun 10;23(12):6537. doi: 10.3390/ijms23126537.

Abstract

The detection of reactive oxygen species (ROS) and the analysis of oxidative stress are frequent applications of functional flow cytometry. Identifying and quantifying the ROS species generated during oxidative stress are crucial steps for the investigation of molecular mechanisms underlying stress responses. Currently, there is a wide availability of fluorogenic substrates for such purposes, but limitations in their specificity and sensitivity may affect the accuracy of the analysis. The aim of our work was to validate a new experimental model based in different strains of B deficient in key genes for antioxidant defense, namely , and s. We applied this model to systematically assess issues of specificity in fluorescent probes and the involvement of different ROS in a bacterial model of oxidative stress, as the probes can react with a variety of oxidants and free radical species. Our results confirm the higher sensitivity and specificity of the fluorescent probe mitochondrial peroxy yellow 1 (MitoPY1) for the detection of HO, and its very low capacity for organic hydroperoxides, thus extending MitoPY1's specificity for HO in mammalian cells to a bacterial model. On the contrary, the fluorescent probe 2',7'-dichlorodihydrofluorescein diacetate (HDCF-DA) is more sensitive to organic peroxides than to HO, confirming the lack of selectivity of HDCF-DA to HO. Treatment with organic peroxides and HO suggests a superoxide-independent oxidation of the fluorescent probe Hydroethidine (HE). We found a positive correlation between the lipophilicity of the peroxides and their toxicity to , suggesting greater quantitative importance of the peroxidative effects on the bacterial membrane and/or greater efficiency of the protection systems against the intracellular effects of HO than against the membrane oxidative stress induced by organic peroxides. Altogether, our results may aid in preventing or minimizing experimental errors and providing recommendations for the proper design of cytometric studies of oxidative stress, in accordance with current recommendations and guidelines.

摘要

活性氧物种(ROS)的检测和氧化应激的分析是功能流式细胞术的常见应用。鉴定和量化氧化应激过程中产生的 ROS 种类是研究应激反应分子机制的关键步骤。目前,有许多用于此目的的荧光底物,但它们的特异性和灵敏度的限制可能会影响分析的准确性。我们的工作旨在验证一种新的实验模型,该模型基于抗氧化防御关键基因缺失的不同 B 株,即 和 s。我们应用该模型系统地评估荧光探针的特异性问题以及不同 ROS 在细菌氧化应激模型中的参与情况,因为探针可以与多种氧化剂和自由基反应。我们的结果证实了荧光探针线粒体过氧黄 1(MitoPY1)用于检测 HO 的更高灵敏度和特异性,以及其对有机过氧化物的极低反应能力,从而将 MitoPY1 在哺乳动物细胞中对 HO 的特异性扩展到细菌模型。相比之下,荧光探针 2',7'-二氯二氢荧光素二乙酸酯(HDCF-DA)对有机过氧化物的敏感性高于 HO,证实了 HDCF-DA 对 HO 的缺乏选择性。用有机过氧化物和 HO 处理表明荧光探针 Hydroethidine(HE)的超氧化物独立氧化。我们发现过氧化物的亲脂性与其对 的毒性之间存在正相关,这表明过氧化物对细菌膜的氧化性影响比 HO 的细胞内效应更大,或者保护系统对 HO 的细胞内效应的保护效率比对有机过氧化物引起的膜氧化应激的保护效率更高。总的来说,我们的结果可能有助于防止或最小化实验误差,并根据当前的建议和指南为氧化应激的细胞计量研究提供适当的设计建议。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6cda/9223410/86730fe4253c/ijms-23-06537-g001.jpg

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