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Third-Generation Biosensor for Lactose Based on Newly Discovered Cellobiose Dehydrogenase

机译:基于新发现的纤维二糖脱氢酶的第三代乳糖生物传感器

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The present paper describes the principle and characteristics of a biosensor for lactose based on a third-generation design involving cellobiose dehydrogenase. As resulted from a previous comparative study (submitted manuscript), the novelty of this lactose biosensor is based on highly efficient direct electron transfer between two newly discovered cellobiose dehydrogenases (CDH), from the white rot fungi Trametes villosa and Phanerochaete sordida, and a solid spectrographic graphite electrode. CDH was immobilized on the electrode surface (0.073 cm~(2)) by simple physical adsorption, and the CDH-modified electrode was next inserted into a wall-jet amperometric cell connected on-line to a flow injection setup (0.5 mL(centre dot)min~(-1)). The P. sordida CDH-based lactose biosensor, proved to be the better one, has a detection limit for lactose of 1 (mu)M, a sensitivity of 1100 (mu)A(centre dot)mM~(-1)(centre dot)cm~(-2), a response time of 4 s (the time required to obtain the maximum peak current), and a linear range from 1 to 100 (mu)M lactose (correlation coefficient 0.998). The simplicity of construction and analytical characteristics make this CDH-based lactose biosensor an excellent alternative to previous lactose biosensors reported in the literature or commercially available. The CDH-lactose sensor was used to quantify the content of lactose in pasteurized milk, buttermilk, and low-lactose milk, using the standard addition method. No effects of the samples matrixes were observed. The operational stability of the sensor was tested for 11 h by continuous injection of 100 (mu)M lactose (290 injections). The final signal of the sensor was maintained at 98percent of its initial signal, with a low standard deviation of 1.72 (RSD 2.41percent).
机译:本文介绍了基于纤维二糖脱氢酶的第三代设计的乳糖生物传感器的原理和特性。根据先前的比较研究(提交的稿件),这种乳糖生物传感器的新颖性是基于两个新发现的纤维二糖脱氢酶(CDH)(来自白腐真菌Trametes villosa和Phanerochaete sordida)和固体之间的高效直接电子转移。光谱石墨电极。通过简单的物理吸附将CDH固定在电极表面(0.073 cm〜(2))上,然后将CDH修饰的电极插入在线连接到流动注射装置(0.5 mL(中心)的壁流安培池中点)min〜(-1))。经证实,基于P. sordida CDH的乳糖生物传感器是一种更好的传感器,其乳糖的检出限为1μM,灵敏度为1100μAA(中心点)mM〜(-1)(中心)。点(cm 2)〜(-2),4 s的响应时间(获得最大峰值电流所需的时间)和1至100μM乳糖的线性范围(相关系数0.998)。结构和分析特性的简单性使这种基于CDH的乳糖生物传感器成为文献中报道或可商购的先前乳糖生物传感器的绝佳替代品。使用标准添加方法,CDH-乳糖传感器用于定量巴氏灭菌牛奶,酪乳和低乳糖牛奶中乳糖的含量。没有观察到样品基质的作用。通过连续注射100μM乳糖(290次注射),测试了传感器11个小时的操作稳定性。传感器的最终信号保持在其初始信号的98%,标准偏差低至1.72(RSD为2.41%)。

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