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首页> 外文期刊>Lab on a chip >A lab-on-a-chip for detection of nerve agent sarin in blood
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A lab-on-a-chip for detection of nerve agent sarin in blood

机译:芯片实验室,用于检测血液中的神经毒剂沙林

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摘要

Sarin (C4H_(10)FO2P,O-isopropyl methylphosphonofiuoridate) is a colourless, odourless and highly toxic phosphonate that acts as a cholinesterase inhibitor and disrupts neuromuscular transmission. Sarin and related phosphonates are chemical warfare agents, and there is a possibility of their application in a military or terrorist attack. This paper reports a lab-on-a-chip device for detecting a trace amount of sarin in a small volume of blood. The device should allow early detection of sarin exposure during medical triage to differentiate between those requiring medical treatment from mass psychogenic illness cases. The device is based on continuous-flow microfiuidics with sequential stages for lysis of whole blood, regeneration of free nerve agent from its complex with blood cholinesterase, protein precipitation, filtration, enzyme-assisted reaction and optical detection. Whole blood was first mixed with a nerve gas regeneration agent, followed by a protein precipitation step. Subsequently, the lysed product was filtered on the chip in two steps to remove particulates and fluoride ions. The filtered blood sample was then tested for trace levels of regenerated sarin using immobilised cholinesterase on the chip. Activity of immobilised cholinesterase was monitored by the enzyme-assisted reaction of a substrate and reaction of the end-product with a chromophore. Resultant changes in chrorrtophore-induced absorbance were recorded on the chip using a Z-shaped optical window. Loss of enzyme activity obtained prior and after passage of the treated blood sample, as shown by a decrease in recorded absorbance values, indicates the presence of either free or regenerated sarin in the blood sample. The device was fabricated in PMMA (polymethylmethacrylate) using CO2-laser micromachining. This paper reports the testing results of the different stages, as well as the whole device with all stages in the required assay sequence. The results demonstrate the potential use of a field-deployable hand-held device for point-of-care triage of suspected nerve agent casualties.
机译:沙林(C4H_(10)FO2P,O-异丙基甲基氟膦酸酯)是一种无色,无味且剧毒的膦酸酯,可作为胆碱酯酶抑制剂并破坏神经肌肉的传递。沙林和相关的膦酸酯是化学战剂,并且有可能将其应用于军事或恐怖袭击。本文报道了一种芯片实验室设备,用于检测少量血液中的微量沙林蛋白。该设备应允许在医疗分类期间及早发现沙林暴露,以区分需要治疗的患者和大规模精神疾病患者。该设备基于连续流动的微流体,具有连续的阶段,用于全血裂解,与胆碱酯酶的复合物中游离神经毒剂的再生,蛋白质沉淀,过滤,酶促反应和光学检测。首先将全血与神经气体再生剂混合,然后进行蛋白质沉淀步骤。随后,将裂解产物分两步在芯片上过滤,以除去颗粒和氟离子。然后使用芯片上固定的胆碱酯酶测试过滤后的血样中痕量的再生沙林蛋白。固定的胆碱酯酶的活性通过底物的酶辅助反应以及终产物与生色团的反应来监测。使用Z形光学窗口在芯片上记录了色团诱导的吸光度的变化。如所记录的吸光度值的降低所示,在处理的血样通过之前和之后获得的酶活性的损失表明在血样中存在游离或再生的沙林蛋白。该设备使用CO2激光微加工在PMMA(聚甲基丙烯酸甲酯)中制造。本文报告了不同阶段的测试结果,以及在所需测定顺序中所有阶段的整个设备的测试结果。结果表明,可现场部署的手持设备可能用于对疑似神经毒剂伤亡进行即时诊断。

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