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IT03. Bio-nano sensing and instrumentation: Evolution and trends

机译:IT03。生物纳米传感与仪器:发展与趋势

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Summary form only given. The non judicious application of a particular class of pesticides - organophosphates (OPs) to control agricultural pest has become a serious environmental issue leading to soil and subsequently surface & ground water pollution. The environmental concerns regarding persistence of organophosphates and toxic metabolites in soil and ground water has stimulated the research to develop rapid and sensitive bio-assay. Fluorescence-based biosensors have generated considerable interest over other biosensors as they allow the safe non electrical remote sensing of materials in hazardous or sensitive environments which derive an analytical signal from the fluorescence emission process. Recently, there has been an intense research effort to develop biosensor devices for the determination of organophosphorus pesticides (OPs) and Organophosphorus hydrolase (OPH), a biological catalyst, can effectively catalyze the hydrolysis of wide range of OPs resulting in the detection of these pesticides. Detection of OPs has been demonstrated by the conjugation of Organophosphorus hydrolase (OPH) and the fluorophorei.e 8-hydroxypyrene-1,3,6-trisulfonic acid (HPTS or pyranine). The hydrolysis of the OPs by the enzyme decreases the pH in its vicinity which is being detected by the pH reporter fluorophore. The fluorophorepyranine has excitation at 460 nm and emission at 510 nm which can be used as pH indicator in the pH range of 7-10 and this has been monitored by developing the associated instrumentation. Enhancement in fluorescence detection signal was observed when amine functionalized silver nanoparticles were covalently attached to OPH6His-pyranine conjugate due to `Metal Enhanced Fluorescence' which in turn has resulted in lower detection limits of ~ 2ppb for paraoxon which are much better as compared to other enzyme based biosensors for organophosphate pesticides. The enhancement in the sensitivity of the biosensing assay due to introduction of silver nanopa- ticles with amine group is because of the metal enhanced fluorescence and stability of the bond between AgNPs and bioconjugate comprising of OPH6His-pyranine. This opens the possibility of the assay to be used for rapid field detection for organophosphates and contributing towards preserving environment.
机译:仅提供摘要表格。不明智地使用一类特殊的农药-有机磷酸盐(OPs)来控制农业害虫已经成为一个严重的环境问题,导致土壤污染,进而污染地表水和地下水。有关土壤和地下水中有机磷酸盐和有毒代谢物的持久性的环境问题,促使该研究发展出快速而灵敏的生物测定方法。基于荧光的生物传感器引起了对其他生物传感器的极大兴趣,因为它们允许在危险或敏感环境中对材料进行安全的非电气遥感,该环境可以从荧光发射过程中获取分析信号。最近,人们进行了大量研究工作,以开发用于测定有机磷农药(OPs)的生物传感器设备,而生物催化剂有机磷水解酶(OPH)可以有效催化多种OP的水解,从而检测出这些农药。 OP的检测已通过有机磷水解酶(OPH)和荧光团(8-羟基py-1,3,6-三磺酸(HPTS或吡喃)的缀合)证明。酶对OP的水解会降低其附近的pH,这可通过pH报告荧光团检测到。氟比吡喃具有在460 nm处的激发和在510 nm处的发射,可在7-10的pH范围内用作pH指示剂,并且已通过开发相关的仪器对其进行了监测。当胺官能化的银纳米颗粒共价附着于OPH6His-吡喃共轭物时,由于“金属增强的荧光”而观察到荧光检测信号的增强,这反过来导致对氧磷的检出限较低,约为2ppb,与其他酶相比要好得多基于有机磷农药的生物传感器。由于引入了带有胺基的银纳米颗粒,生物传感测定的灵敏度提高了,这是因为金属增强了荧光强度,AgNP与包含OPH6His-吡喃的生物共轭物之间的键的稳定性增强。这打开了该测定法用于有机磷酸盐快速现场检测并有助于保护环境的可能性。

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