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Design and application of a bioluminescent biosensor for detection of toxicity using Huh7-CMV-luc cell line

机译:Huh7-CMV-luc细胞系用于毒性检测的生物发光生物传感器的设计和应用

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Cell-based biosensors (CBBs) are becoming important tools for biosecurity applications and rapid diagnostics in food microbiology for their unique capability of detecting hazardous materials. Pollutants, such as heavy metals and chemicals, are now considered as a global threat and are associated with detrimental health outcomes. Fast and accurate detection of pollutants is essential to reduce these threats. In this study, the enhancer sequence of human cytomegalovirus (hCMV) IE genes cloned upstream of luc gene in PGL4.26 plasmid, in order to increase basal luciferase activity. This recombinant vector was transfected into Huh7 cell line and after 21 days of treatment with Hygromycin B selectable marker, stable cell line was generated. After several passages, cells containing this vector showed high luciferase activity in normal conditions without any induction following to overexpression of luc gene. Huh7-CMV-luc cell line was able to detect the slightest changes in ATP level, due to the effect of different toxins on the cell which disrupt cellular respiration and ATP production processes. In order to investigate the sensitivity of the cell line, cells were incubated with 0.1-10 ??M of chemical toxins affecting ATP production. This toxins affect luciferase activity in a dose dependent manner, with maximal sensitivity approximately about 0.2 ??M to toxin concentrations. Additionally, this biosensor provided a rapid detection as early as 4 h in response to the toxicants. Whole cell biosensors like huh7-CMV-luc cell line can be considered as a powerful tool for the sensitive and efficient monitoring of general toxins, drugs and environmental pollutants.
机译:基于细胞的生物传感器(CBB)具有独特的检测有害物质的能力,正成为生物安全应用和食品微生物学快速诊断的重要工具。如今,重金属和化学药品等污染物已被视为全球威胁,并与健康状况不利相关。快速准确地检测污染物对于减少这些威胁至关重要。在这项研究中,人类巨细胞病毒(hCMV)IE基因的增强子序列克隆在PGL4.26质粒中luc基因的上游,以增加基础荧光素酶的活性。将该重组载体转染到Huh7细胞系中,并用潮霉素B选择标记处理21天后,产生稳定的细胞系。数次传代后,含有该载体的细胞在正常条件下显示出高的萤光素酶活性,而在luc基因的过表达后却没有任何诱导作用。由于不同毒素对细胞的作用会破坏细胞呼吸和ATP的产生,因此Huh7-CMV-luc细胞系能够检测到最少量的ATP水平变化。为了研究细胞系的敏感性,将细胞与影响ATP产生的0.1-10μM化学毒素一起孵育。这种毒素以剂量依赖的方式影响荧光素酶的活性,对毒素浓度的最大敏感性约为0.2ΔM。此外,该生物传感器可在有毒物质响应的最早4小时内提供快速检测。像huh7-CMV-luc细胞系这样的全细胞生物传感器可以被认为是灵敏而有效地监测一般毒素,药物和环境污染物的强大工具。

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