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首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >A facile luminescence resonance energy transfer method for detecting cyano-containing pesticides in herbal medicines
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A facile luminescence resonance energy transfer method for detecting cyano-containing pesticides in herbal medicines

机译:一种容易发光共振能量转移方法,用于检测草药中的含氰基农药的含有氰基药物

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摘要

It is urgently demanded to establish facile and rapid methods for screening pesticide residues in cultivated herbal medicines to guarantee drug safety. Herein a fluorescent (FL) method was constructed for detecting cyano-containing pesticides by employing the luminescence resonance energy transfer (LRET) behavior between up-conversion nanoparticles (UCNPs) and gold nanoparticles (AuNPs). Negatively-charged citrate-capped AuNPs can be adsorbed onto the surface of positively-charged amino-modified UCNPs by an electrostatic interaction. It resulted in decrease of the FL signal of UCNPs through the LRET process. Cyano-containing pesticides can bind with AuNPs via Au-N=C metal-ligand coordination and remove citrate from the surface of AuNPs. The replacement process induced aggregation of AuNPs and inhibition of LRET. Thus the pesticides can be detected by a facile procedure within 6 min. Acetamiprid, fenpropathrin and chlorothalonil were adopted as model analytes to study the feasibility of the EL method for the detection of cyano-containing pesticides. With the optimum conditions, acetamiprid, fenpropathrin and chlorothalonil can be detected within the ranges of 0.10-100 ng mL(-1), 1.0-100 ng mL(-1) and 0.10-50 ng mL(-1), with detection limits of 0.015 ng mL(-1), 0.24 ng mL(-1) and 0.011 ng mL(-1), respectively. It has been successfully employed to detect acetamiprid in Lanceotata, Angelica dahurica and Astragalus with acceptable recovery values of 76.0%-120.0%, demonstrating its potential for practical application. The work provides a highly efficient methodologic platform for screening pesticide residues in herbal medicines.
机译:迫切要求建立筛选培养的草药中的农药残留物,以确保药物安全性。本文通过采用上转化纳米颗粒(UCNP)和金纳米粒子(AUNP)之间的发光共振能量转移(LRET)行为来构建用于检测含氰农药的荧光(FL)方法。通过静电相互作用将带负电的柠檬酸覆盖的剖腹产镜覆盖在带正电荷的氨基修饰的UCNP的表面上。它通过LRET过程导致UCNP的FL信号降低。含氰的杀虫剂可以通过Au-n = C金属 - 配体配位与AuNP结合,并从AUNP的表面中除去柠檬酸盐。替代过程诱导AUNP的聚集和抑制LRET。因此,杀虫剂可以在6分钟内通过容易程序检测。采用丙基哌啶,粪便肠蛋白和氯培洛洛洛洛洛洛洛洛洛洛洛洛氏菌,以研究EL方法检测含氰基农药的可行性。通过最佳条件,可以在0.10-100ng ml(-1),1.0-100ng ml(-1)和0.10-50ng ml(-1)的范围内检测acetamiprid,fenpropathrin和氯培拉酚核素,具有检测限0.015 ng ml(-1),0.24ng ml(-1)和0.011ng ml(-1)。它已成功用于检测兰克塔,Angelica Dahurica和Astragalus的acetaMiprid,可接受的恢复值为76.0%-120.0%,证明其实际应用的潜力。该工作提供了一种高效的方法,用于筛选草药中的农药残留物。

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