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首页> 外文期刊>Bioelectrochemistry >Sensitive bi-enzymatic biosensor based on polyphenoloxidases-gold nanoparticles-chitosan hybrid film-graphene doped carbon paste electrode for carbamates detection
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Sensitive bi-enzymatic biosensor based on polyphenoloxidases-gold nanoparticles-chitosan hybrid film-graphene doped carbon paste electrode for carbamates detection

机译:基于多酚氧化酶的灵敏双酶生物传感器-金纳米颗粒-壳聚糖杂化膜-石墨烯掺杂碳糊电极检测氨基甲酸酯

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摘要

A bi-enzymatic biosensor (LACC-TYR-AuNPs-CS/GPE) for carbamates was prepared in a single step by electrodeposition of a hybrid film onto a graphene doped carbon paste electrode (GPE). Graphene and the gold nanoparticles (AuNPs) were morphologically characterized by transmission electron microscopy, X-ray photoelectron spectroscopy, dynamic light scattering and laser Doppler velocimetry. The electrodeposited hybrid film was composed of laccase (LACC), tyrosinase (TYR) and AuNPs entrapped in a chitosan (CS) polymeric matrix. Experimental parameters, namely graphene redox state, AuNPs:CS ratio, enzymes concentration, pH and inhibition time were evaluated. LACC-TYR-AuNPs-CS/GPE exhibited an improved Michaelis-Menten kinetic constant (26.9 ± 0.5 M) when compared with LACC-AuNPs-CS/GPE (37.8 ± 0.2 M) and TYR-AuNPs-CS/GPE (52.3 ± 0.4M). Using 4-aminophenol as substrate at pH 5.5, the device presented wide linear ranges, low detection limits (1.68 × 10~(?9)±1.18 × 10~(?10)-2.15 × 10~(?7)±3.41×10~(?9) M), high accuracy, sensitivity (1.13 × 10~6± 8.11 × 10~4-2.19 × 10~8±2.51×10~7 %inhibition M~(?1)), repeatability (1.2-5.8% RSD), reproducibility (3.2-6.5% RSD) and stability (ca. twenty days) to determine carbaryl, formetanate hydrochloride, propoxur and ziram in citrus fruits based on their inhibitory capacity on the polyphenoloxidases activity. Recoveries at two fortified levels ranged from 93.8 ± 0.3% (lemon) to 97.8 ± 0.3% (orange). Glucose, citric acid and ascorbic acid do not interfere significantly in the electroanalysis. The proposed electroanalytical procedure can be a promising tool for food safety control.
机译:通过将杂化膜电沉积到石墨烯掺杂的碳糊电极(GPE)上,一步就可以制备出氨基甲酸酯的双酶生物传感器(LACC-TYR-AuNPs-CS / GPE)。通过透射电子显微镜,X射线光电子能谱,动态光散射和激光多普勒测速仪对石墨烯和金纳米颗粒(AuNPs)进行了形态学表征。电沉积杂化膜由漆酶(LACC),酪氨酸酶(TYR)和截留在壳聚糖(CS)聚合物基质中的AuNP组成。评估了实验参数,即石墨烯的氧化还原状态,AuNPs:CS比,酶浓度,pH和抑制时间。与LACC-AuNPs-CS / GPE(37.8±0.2 M)和TYR-AuNPs-CS / GPE(52.3±)相比,LACC-TYR-AuNPs-CS / GPE的Michaelis-Menten动力学常数更高(26.9±0.5 M) 0.4M)。使用4-氨基苯酚作为底物在pH 5.5时,该器件具有宽线性范围,低检测限(1.68×10〜(?9)±1.18×10〜(?10)-2.15×10〜(?7)±3.41× 10〜(?9)M),高精度,灵敏度(1.13×10〜6±8.11×10〜4-2.19×10〜8±2.51×10〜7%抑制M〜(?1)),重复性(1.2 RSD -5.8%RSD),重现性(3.2-6.5%RSD)和稳定性(约20天),基于它们对多酚氧化酶活性的抑制能力来测定柑桔中的西芳基,甲酸酯,盐酸盐,丙氧磷和Ziram。两种强化水平下的回收率从93.8±0.3%(柠檬)到97.8±0.3%(橙色)。葡萄糖,柠檬酸和抗坏血酸不会显着干扰电分析。拟议的电分析程序可能是食品安全控制的有前途的工具。

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