Highly specific and sensitive chromo-fluorogenic detection of sarin, tabun, and mustard gas stimulants: a multianalyte recognition approach.

IF 2.7 3区 化学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Photochemical & Photobiological Sciences Pub Date : 2024-04-01 Epub Date: 2024-03-22 DOI:10.1007/s43630-024-00553-2
Najmin Tohora, Sabbir Ahamed, Manas Mahato, Tuhina Sultana, Jyoti Chourasia, Arpita Maiti, Sudhir Kumar Das
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Abstract

Nerve agents are the most notorious substances, which can be fatal to an individual because they block the activity of acetylcholinesterase. Fighting against unpredictable terrorist assaults and wars requires the simple and quick detection of chemical warfare agent vapor. In the present contribution, we have introduced a rhodamine-based chemosensor, BDHA, for the detection of nerve gas-mimicking agents diethylchlorophosphate (DCP) and diethylcyanophosphonate (DCNP) and mustard gas-mimicking agent 2-chloroethyl ethyl sulfide (CEES), both in the liquid and vapor phase. Probe BDHA provides the ability for detection by the naked eye in terms of colorimetric and fluorometric changes. It has been revealed that the interaction between nerve agents mimics and probe BDHA facilitates spirolactam ring opening due to the phosphorylation process. Thus, the highly fluorescent and colored species developed while probe BDHA is colorless and non-fluorescent due to the intramolecular spirolactam ring. Moreover, probe BDHA can effectively recognize DCP, DCNP, and CEES in the µM range despite many toxic analytes and could be identified based on the response times and quantum yield values. Inexpensive, easily carried paper strips-based test kits were developed for the quick, on-location solid and vapor phase detection of these mustard gas imitating agents (CEES) and nerve gas mimicking agents (DCP and DCNP) without needing expensive equipment or skilled personnel. More remarkably, the test strips' color and fluorescence can be rapidly restored, exposing them to triethyl amine (TEA) for cyclic use, suggesting a potential application in the real-time identification of chemical warfare agents. To accomplish the on-location application of BDHA, we have experimented with soil samples to find traces of DCP. Therefore, the chromo-fluorogenic probe BDHA is a promising, instantaneous, and on-the-spot monitoring tool for the selective detection of DCP, DCNP, and CEES in the presence of others.

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对沙林毒气、塔崩毒气和芥子气兴奋剂进行高特异性和灵敏度的色氟检测:一种多分析物识别方法。
神经毒剂是最臭名昭著的物质,由于会阻断乙酰胆碱酯酶的活性,因此会对人造成致命伤害。为了应对不可预测的恐怖袭击和战争,需要简单快速地检测化学战剂蒸汽。在本文中,我们介绍了一种基于罗丹明的化学传感器 BDHA,用于检测液态和气态的神经毒气模拟毒剂二乙基氯磷酸酯(DCP)和二乙基氰基膦酸酯(DCNP)以及芥子气模拟毒剂 2-氯乙基硫醚(CEES)。探针 BDHA 可通过比色和荧光变化进行肉眼检测。研究表明,神经毒剂模拟物与探针 BDHA 之间的相互作用可促进螺旋内酰胺环在磷酸化过程中打开。因此,探针 BDHA 产生了高荧光和有色物种,而探针 BDHA 则由于分子内的螺内酰胺环而无色无荧光。此外,尽管存在多种有毒分析物,探针 BDHA 仍能有效识别 µM 范围内的 DCP、DCNP 和 CEES,并可根据响应时间和量子产率值进行识别。我们开发出了价格低廉、携带方便的纸条式检测试剂盒,无需昂贵的设备或专业人员,即可对这些芥子气模仿剂(CEES)和神经毒气模仿剂(DCP 和 DCNP)进行快速、现场固相和气相检测。更值得注意的是,将试纸暴露于三乙胺(TEA)中可快速恢复试纸的颜色和荧光,循环使用,这表明试纸有可能应用于化学战剂的实时识别。为了实现 BDHA 的现场应用,我们对土壤样本进行了实验,以发现二氯丙醇的踪迹。因此,对于在其他物质存在的情况下选择性地检测 DCP、DCNP 和 CEES 而言,色氟探针 BDHA 是一种很有前途的瞬时现场监测工具。
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来源期刊
Photochemical & Photobiological Sciences
Photochemical & Photobiological Sciences 生物-生化与分子生物学
CiteScore
5.60
自引率
6.50%
发文量
201
审稿时长
2.3 months
期刊介绍: A society-owned journal publishing high quality research on all aspects of photochemistry and photobiology.
期刊最新文献
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