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首页> 外文期刊>Journal of Hazardous Materials >Bio-inspired ultrasensitive colorimetric detection of methyl isothiocyanate on nylon-6 nanofibrous membrane: A comparison of biological thiol reactivities
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Bio-inspired ultrasensitive colorimetric detection of methyl isothiocyanate on nylon-6 nanofibrous membrane: A comparison of biological thiol reactivities

机译:生物启发的尼龙6纳米纤维膜上异硫氰酸甲酯的超灵敏比色检测:生物硫醇反应性的比较

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Living organisms, including human beings, rapidly show skin color changes after chemical poisonings, a result of toxicological or detoxification reactions caused by biological thiol compounds. On the other side, quick and portable detection of highly-volatile toxicants is an urgent need for improving human safety and personal protection, especially real-time monitoring of fumigants at low level for protection of farm workers and residents from overexposure of fumigants, vaporous pesticides. Here, we designed a rapid and portable detection method for methyl isothiocyanate (MITC) vapor by mimicking detoxification reactions of biological thiols in human bodies with MITC. The detection reaction was implemented on a nylon-6 nanofibrous membrane with ultrahigh surface areas to show color signals with the addition of Ellman's reagent. The reactivities of glutathione, N-acetyl-L-cysteine, L-homocysteine, cysteamine, and thioglycolic acid toward MITC were experimentally explored and theoretically discussed. The detection sensitivity is tunable in different biological thiol systems, which broadens the sensor applications in detection of trace amount of MITC in ambient environment and improves the protection of human safety. The new sensor system reduced the sensor operation time to 15 min and achieved the detection limit of 99 ppb, much lower than its permissible exposure limit (220 ppb).
机译:生物中的硫醇化合物引起的毒理或排毒反应导致化学中毒后,包括人类在内的活生物体迅速显示出肤色变化。另一方面,迫切需要快速,便携式地检测高挥发性毒物,以改善人员安全和人身保护,尤其是对低浓度熏蒸剂进行实时监控,以保护农场工人和居民免受熏蒸剂,气态农药的过度暴露。在这里,我们通过模仿MITC人体中生物硫醇的解毒反应,设计了一种快速,便携式的异硫氰酸甲酯(MITC)蒸气检测方法。检测反应是在具有超高表面积的尼龙6纳米纤维膜上进行的,通过添加Ellman试剂可显示颜色信号。对谷胱甘肽,N-乙酰基-L-半胱氨酸,L-高半胱氨酸,半胱胺和巯基乙酸对MITC的反应性进行了实验研究,并在理论上进行了讨论。在不同的生物硫醇系统中,检测灵敏度是可调的,从而拓宽了传感器在环境中痕量MITC的检测中的应用范围,并提高了对人体安全的保护。新的传感器系统将传感器的运行时间缩短至15分钟,并达到了99 ppb的检测极限,远低于其允许的暴露极限(220 ppb)。

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