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Design and Application of a Biosensor for Monitoring Toxicity of Compounds to Eukaryotes

机译:监测化合物对真核生物毒性的生物传感器的设计与应用

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Here we describe an alternative approach to currently used cytotoxicity analyses through applying eukaryotic microbial biosensors. The yeast Saccharomyces cerevisiae was genetically modified to express firefly luciferase, generating a bioluminescent yeast strain. The presence of any toxic chemical that interfered with the cells' metabolism resulted in a quantitative decrease in bioluminescence. In this study, it was demonstrated that the luminescent yeast strain senses chemicals known to be toxic to eukaryotes in samples assessed as nontoxic by prokaryotic biosensors. As the cell wall and adaptive mechanisms of S. cerevisiaecells enhance stability and protect from extremes of pH, solvent exposure, and osmotic shock, these inherent properties were exploited to generate a biosensor that should detect a wide range of both organic and inorganic toxins under extreme conditions.
机译:在这里,我们描述了通过应用真核微生物生物传感器对当前使用的细胞毒性分析的替代方法。对酵母酿酒酵母进行了基因修饰,以表达萤火虫荧光素酶,从而产生了一种生物发光酵母菌株。任何有毒化学物质的存在都会干扰细胞的新陈代谢,从而导致生物发光的定量下降。在这项研究中,已证明发光酵母菌株可感测到对原核生物传感器评估为无毒的样品中的真核生物有毒的化学物质。由于酿酒酵母细胞的细胞壁和适应机制增强了稳定性并能抵御极端的pH值,溶剂暴露和渗透压冲击,因此利用这些固有特性来生成生物传感器,该传感器应能在极端条件下检测多种有机和无机毒素条件。

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