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细菌 Lux 生物传感器在遗传毒理学研究中的应用。

Bacterial Lux Biosensors in Genotoxicological Studies.

机构信息

The Laboratory of Ecological Genetics, Vavilov Institute of General Genetics, Russian Academy of Sciences, Moscow 117971, Russia.

出版信息

Biosensors (Basel). 2023 Apr 29;13(5):511. doi: 10.3390/bios13050511.

Abstract

The aim of this study was to assess the applicability of the bacterial lux biosensors for genotoxicological studies. Biosensors are the strains of MG1655 carrying a recombinant plasmid with the operon of the luminescent bacterium fused with the promoters of inducible genes: A, D, A, S, and G. The genotoxicity of forty-seven chemical compounds was tested on a set of three biosensors pSoxS-lux, pKatG-lux and pColD-lux, which allowed us to estimate the oxidative and DNA-damaging activity of the analyzed drugs. The comparison of the results with the data on the mutagenic activity of these drugs from the Ames test showed a complete coincidence of the results for the 42 substances. First, using lux biosensors, we have described the enhancing effect of the heavy non-radioactive isotope of hydrogen deuterium (DO) on the genotoxicity of chemical compounds as possible mechanisms of this effect. The study of the modifying effect of 29 antioxidants and radioprotectors on the genotoxic effects of chemical agents showed the applicability of a pair of biosensors pSoxS-lux and pKatG-lux for the primary assessment of the potential antioxidant and radioprotective activity of chemical compounds. Thus, the results obtained showed that lux biosensors can be successfully used to identify potential genotoxicants, radioprotectors, antioxidants, and comutagens among chemical compounds, as well as to study the probable mechanism of genotoxic action of test substance.

摘要

本研究旨在评估细菌 lux 生物传感器在遗传毒理学研究中的适用性。生物传感器是携带重组质粒的 MG1655 菌株,该质粒融合了发光细菌的 操纵子与诱导基因的启动子:A、D、A、S 和 G。使用一组三个生物传感器 pSoxS-lux、pKatG-lux 和 pColD-lux 测试了 47 种化学化合物的遗传毒性,这使我们能够估计分析药物的氧化和 DNA 损伤活性。将这些结果与 Ames 试验中这些药物的致突变活性数据进行比较,发现 42 种物质的结果完全一致。首先,我们使用 lux 生物传感器描述了重非放射性氢同位素氘 (DO) 对化学化合物遗传毒性的增强作用,这可能是这种作用的机制。研究 29 种抗氧化剂和辐射防护剂对化学试剂遗传毒性的修饰作用表明,一对生物传感器 pSoxS-lux 和 pKatG-lux 可用于初步评估化学化合物的潜在抗氧化和辐射防护活性。因此,所得结果表明,lux 生物传感器可成功用于鉴定化学化合物中的潜在遗传毒性物质、辐射防护剂、抗氧化剂和共变剂,以及研究测试物质遗传毒性作用的可能机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7b0/10216269/bc4fefbaaef2/biosensors-13-00511-g001.jpg

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