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Sensitive impedimetric biosensor for direct detection of diazinon based on lipases

机译:基于脂肪酶的直接检测二嗪农的灵敏阻抗生物传感器

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Two novel impedimetric biosensors for highly sensitive and rapid quantitative detection of diazinon in an aqueous medium were developed using two types of lipase, from Candida Rugosa (microbial source) (CRL) and from porcine pancreas (animal source) (PPL) immobilized onto a functionalized gold electrode. The lipase is characterized to specifically catalyze the hydrolysis of ester functions leading to the transformation of diazinon into diethyl phosphorothioic acid (DETP) and 2-isopropyl-4-methyl-6-hydroxypyrimidine (IMHP). The developed biosensors both presented a large wide range of linearity up to 50μM with a detection limit of 10 nM for the CRL biosensor and 0.1 μM for the PPL biosensor. A comparative study was carried out between the two biosensors and results showed higher sensitivity for the CRL sensor. Moreover, it presented good accuracy and reproducibility, and had very good storage and multiple use stability for 25 days when stored at 4°C.
机译:使用两种类型的脂肪酶开发了两种新型的阻抗式生物传感器,用于对水介质中的二嗪农进行高灵敏和快速的定量检测:来自念珠菌(微生物来源)(CRL)和固定于功能化的猪胰腺(动物来源)(PPL)的脂肪酶金电极。所述脂肪酶的特征在于特异性催化酯官能团的水解,导致二嗪农转化为二乙基硫代磷酸(DETP)和2-异丙基-4-甲基-6-羟基嘧啶(IMHP)。已开发的生物传感器均具有高达50μM的宽线性范围,CRL生物传感器的检出限为10 nM,PPL生物传感器的检出限为0.1μM。在两个生物传感器之间进行了比较研究,结果表明CRL传感器具有更高的灵敏度。此外,当在4°C下保存时,它具有良好的准确性和可重复性,并且具有非常好的保存和25天的多次使用稳定性。

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