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Assessing bioavailability and genotoxicity of heavy metals and metallic nanoparticles simultaneously using dual-sensing Escherichia coli whole-cell bioreporters

机译:使用双感应大肠杆菌全细胞生物报告者同时评估重金属和金属纳米颗粒的生物利用度和遗传毒性

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Genetically engineered bacterial strains called whole-cell bioreporters (WCBs) generated by fusing the promoter region of stress-responsive genes and reporter genes have been widely used as biosensors to detect toxic materials in the environment. In this study, we report a dual-sensing WCB harboring recAp::egfp and zntAp::mcherry to measure the genotoxicity and bioavailability of heavy metals and metallic nanoparticles (NPs) simultaneously. Since the dual-sensing WCB harbored recAp::egfp and zntAp::mcherry, the genotoxicity and bioavailability of heavy metals and metallic NPs that activate ZntR would be assessed by measuring the fluorescence signal of enhanced green fluorescent protein (eGFP) and mCherry, respectively. Among the tested heavy metal(loid)s, only Cr induced both eGFP and mCherry expression, and some of them only induced mCherry, thereby suggesting that Cr is genotoxic. In case of the tested metallic NPs, Ti2O NPs, ZnO NPs, and Au NPs showed weak inhibitory effects on growth, but the eGFP was not induced. It was inferred that the tested NPs were not genotoxic and the inhibitory effects would not be related to direct DNA damage pathways. In addition, it was observed that ZnO NPs induced mCherry expression, indicating that the Zn ion was dissolved from the NPs. Although the dual-sensing WCB described here was limited to ZnO NPs, WCBs would be an alternative tool to investigate the dissolution of metallic NPs when the corresponding metal ion sensing systems were available.
机译:通过融合应激反应基因和报告基因的启动子区域而产生的称为全细胞生物报告者(WCB)的基因工程细菌菌株已被广泛用作检测环境中有毒物质的生物传感器。在这项研究中,我们报告了一种带有recAp :: egfp和zntAp :: mcherry的双传感WCB,可同时测量重金属和金属纳米颗粒(NP)的遗传毒性和生物利用度。由于双感应WCB包含recAp :: egfp和zntAp :: mcherry,激活ZntR的重金属和金属NP的遗传毒性和生物利用度将通过分别测量增强的绿色荧光蛋白(eGFP)和mCherry的荧光信号来评估。 。在测试的重金属(金属)中,只有Cr诱导了eGFP和mCherry的表达,其中一些仅诱导了mCherry的表达,从而表明Cr具有遗传毒性。在测试的金属NP的情况下,Ti2O NP,ZnO NP和Au NP对生长的抑制作用较弱,但未诱导eGFP。可以推断,所测试的NPs没有遗传毒性,其抑制作用与直接的DNA损伤途径无关。另外,观察到ZnO NP诱导mCherry表达,表明Zn离子从NP中溶解。尽管此处描述的双传感WCB仅限于ZnO NP,但当有相应的金属离子传感系统可用时,WCB将成为研究金属NP溶解的替代工具。

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