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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >A test strip platform based on a whole-cell microbial biosensor for simultaneous on-site detection of total inorganic mercury pollutants in cosmetics without the need for predigestion
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A test strip platform based on a whole-cell microbial biosensor for simultaneous on-site detection of total inorganic mercury pollutants in cosmetics without the need for predigestion

机译:基于全细胞微生物生物传感器的测试带状平台,用于同时现场检测化妆品中总无机汞污染物的总体检测,而无需预测

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摘要

Mercury pollutants such as mercuric chloride (HgCl2), mercurous chloride (Hg2Cl2) and mercuric ammonium chloride (Hg(NH2)Cl) are often found in cosmetics. Previous attempts at the on-site detection of mercury were hindered by the complicated and dangerous pretreatment procedure of converting various forms of mercury to Hg (II) ions. In this study, a test strip platform was developed based on a whole-cell microbial biosensor for the simultaneous detection of soluble and insoluble inorganic mercury pollutants in cosmetics without the need for predigestion. The genetic circuits with constitutively expressed MerR as sensor proteins and inducible red fluorescent protein (RFP) as the reporter were introduced into Escherichia coli to construct the mercury detection biosensor. The RFP fluorescence intensity of this biosensor showed a excellent linear relationship (R-2 = 0.9848) with the Hg (II) concentration ranging from 50 nM to 10 mu M in Luria-Bertani (LB) broth. Further research indicated that this biosensor could respond not only to Hg (II) ions but also to insoluble Hg2Cl2 and Hg2Cl2. The transcriptomic results confirmed the mercury conversion ability of the whole-cell biosensor from a gene expression perspective. This biosensor was embedded on filter paper to form a test strip, which could be used to determine whether the total inorganic mercury pollutants in cosmetics exceeded 1 mg/kg. Therefore, this strip provided a low cost, easy-to-use, and instrument-independent method for the detection of mercury pollution in cosmetics, while this study revealed the unique advantages of microbial biosensors in the automatic bioconversion of targets.
机译:汞污染物如酰胺氯化物(HgCl2),氯化汞(Hg2Cl2)和氯化汞(Hg(NH2)Cl)通常在化妆品中发现。以前在现场检测的尝试试图通过将各种形式的汞转化为HG(II)离子的复杂和危险的预处理程序受阻。在本研究中,基于全细胞微生物生物传感器开发了一种测试条平台,用于同时检测化妆品中的可溶性和不溶性无机汞污染物,而无需预测。作为传感器蛋白和诱导型红荧光蛋白(RFP)作为报告的遗传电路被引入大肠杆菌以构建汞检测生物传感器。这种生物传感器的RFP荧光强度显示出优异的线性关系(R-2 = 0.9848),其HG(II)浓度范围为50nm至10μm在Luria-Bertani(LB)肉汤中。进一步的研究表明,这种生物传感器不仅可以响应HG(II)离子,而且还可以响应不溶于HG2Cl2和HG2Cl2。转录组结果证实了来自基因表达的观点的全细胞生物传感器的汞转化能力。将该生物传感器嵌入过滤纸上以形成测试条,可用于确定化妆品中的总无机汞污染物是否超过1mg / kg。因此,该条带提供了低成本,易于使用的和仪器 - 用于检测化妆品中汞污染的仪器无关的方法,而本研究揭示了微生物生物传感器在靶标中的自动生物传感器的独特优势。

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