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Determination of Penicillins in Milk by a Dual-Optrode Biosensor

机译:双透镜生物传感器测定牛奶中青霉素

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摘要

Penicillins are the most frequently found antibiotic residues in milk, as they are commonly used for the treatment of bacterial infections in cows. In the present study, we introduce a method for the rapid detection of penicillin residues in raw milk based on the determination of glucose concentration in milk with a dual flow-through biosensor. The molar concentration of glucose in milk is typically over 500 times lower than the concentration of lactose and is highly dependent on the rate of lactose hydrolysis, which is catalyzed by alpha-galactosidase. Glucose concentrations in milk change with variation in the alpha-galactosidase activity. alpha-Galactosidase is an enzyme produced in the microbiota in milk and its activity is inhibited by benzylpenicillin. Spiking milk with benzylpenicillin lowers glucose concentrations in comparison to high-quality milk after short storage intervals. The presence of penicillin in the milk of treated animals resulted in decreased glucose concentrations in comparison with high-quality milk that contained no antibiotics. The glucose concentration in milk samples was followed by the system enabling the elimination of the effects of bacterial respiration in the output with reliable results in less than 1 min.
机译:青霉素是牛奶中最常发现的抗生素残留物,因为它们通常用于治疗奶牛的细菌感染。在本研究中,我们介绍了一种基于牛奶中葡萄糖浓度的葡萄糖浓度的快速检测生乳的快速检测方法,介绍了用双流通过生物传感器的葡萄糖浓度。牛奶中葡萄糖的摩尔浓度通常比乳糖的浓度低500倍,高度依赖于乳糖水解的速率,其被α-半乳糖苷酶催化。牛奶中的葡萄糖浓度随α-半乳糖苷酶活性的变化。 α-半乳糖苷酶是牛奶中微生物生成的酶,其活性受到苄基培斯林蛋白抑制。尖刺牛奶与苄基百年霉素降低葡萄糖浓度与短储存间隔后的高质量牛奶相比。与含有抗生素无抗生素的高质量乳,对治疗动物牛奶中青霉素的存在导致葡萄糖浓度降低。牛奶样品中的葡萄糖浓度随后是能够在不到1分钟内通过可靠的结果消除细菌呼吸的影响。

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