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首页> 外文期刊>Journal of Biotechnology >Encapsulating genetically modified Saccharomyces cerevisiae cells in a flow-through device towards the detection of diclofenac in wastewater
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Encapsulating genetically modified Saccharomyces cerevisiae cells in a flow-through device towards the detection of diclofenac in wastewater

机译:在流通装置中封装遗传修饰的酿酒酵母细胞朝向废水中双氯芬酸的检测

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摘要

Recently it has been proposed to use sensors based on genetically engineered reporter cells to perform continuous online water monitoring. Here we describe the design, assembly and performance of a novel flow-through device with immobilized genetically modified yeast cells that produce a fluorescent protein upon stimulation with diclofenac whose intensity is then detected by fluorescence microscopy. Although other devices employing immobilized cells for the detection of various analytes have already been described before, as novelty our system allows safe enclosure of the sensor cells, and thus, to obtain fluorescent signals that are not falsified by a loss of cells. Furthermore, the yeast cells are prevented from being released into the environment. Despite the safe containment, the immobilized reporter cells are accessible to nutrients and analytes. They thus have both the ability to grow and respond to the analyte. Both in cell culture medium and standardized synthetic wastewater, we are able to differentiate between diclofenac concentrations in a range from 10 to 100 mu M. As particularly interesting feature, we show that only the biologically active fraction of diclofenac is detected. Nowadays, contamination of wastewater with diclofenac and other pharmaceutical residues is becoming a severe problem. Our investigations may pave the way for an easy-to-use and cost-efficient wastewater monitoring method.
机译:最近,已经提出基于转基因报告细胞的传感器进行连续的在线水监测。在这里,我们描述了一种新的流通装置的设计,组装和性能,其具有固定的遗传修饰的酵母细胞,其在用双氯芬酸刺激时产生荧光蛋白,然后通过荧光显微镜检测强度。尽管之前已经描述了采用用于检测各种分析物的各种分析物的其他装置,但是由于新颖的我们的系统允许传感器电池的安全外壳,因此,获得不被细胞损失不伪造的荧光信号。此外,防止酵母细胞被释放到环境中。尽管安全遏制,但营养物质和分析物可获得固定化的报告细胞。因此,它们具有生长和响应分析物的能力。在细胞培养基和标准化的合成废水中,我们能够区分在10至100μm的双氯芬酸浓度范围内。作为特别有趣的特征,我们表明只检测到双氯芬酸的生物活性分数。如今,具有双氯芬酸和其他药物残留物的废水污染正在成为一个严重的问题。我们的调查可以为易于使用和成本高效的废水监测方法铺平道路。

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