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利用固定化假交替单胞菌细胞生物传感器快速测定角叉菜胶。

Rapid determination of kappa-carrageenan using a biosensor from immobilized Pseudomonas carrageenovora cells.

机构信息

School of Chemical Sciences and Food Technology, Faculty of Science and Technology, Universiti Kebangsaan Malaysia, UKM Bangi, Selangor Darul Ehsan, Malaysia.

Department of Chemistry, Faculty of Science, Ibb University, Ibb, Republic of Yemen.

出版信息

PLoS One. 2019 Apr 16;14(4):e0214580. doi: 10.1371/journal.pone.0214580. eCollection 2019.

Abstract

A potentiometric whole cell biosensor based on immobilized marine bacterium, Pseudomonas carrageenovora producing κ-carrageenase and glycosulfatase enzymes for specific and direct determination of κ-carrageenan, is described. The bacterial cells were immobilized on the self-plasticized hydrogen ion (H+)-selective acrylic membrane electrode surface to form a catalytic layer. Hydrogen ionophore I was incorporated in the poly(n-butyl acrylate) [poly(nBA)] as a pH ionophore. Catalytic decomposition of κ-carrageenan by the bienzymatic cascade reaction produced neoagarobiose, an inorganic sulfate ion and a proton. The latter was detectable by H+ ion transducer for indirect potentiometric quantification of κ-carrageenan concentration. The use of a disposable screen-printed Ag/AgCl electrode (SPE) provided no cleaning requirement and enabled κ-carrageenan detection to be carried out conveniently without cross contamination in a complex food sample. The SPE-based microbial biosensor response was found to be reproducible with high reproducibility and relative standard deviation (RSD) at 2.6% (n = 3). The whole cell biosensor demonstrated a broad dynamic linear response range to κ-carrageenan from 0.2-100 ppm in 20 mM phosphate buffer saline (PBS) at pH 7.5 with a detection limit at 0.05 ppm and a Nernstian sensitivity of 58.78±0.87 mV/decade (R2 = 0.995). The biosensor showed excellent selectivity towards κ-carrageenan compared to other types of carrageenans tested e.g. ι-carrageenan and λ-carrageenan. No pretreatment to the food sample was necessary when the developed whole cell biosensor was employed for direct assay of κ-carrageenan in dairy product.

摘要

一种基于产κ-卡拉胶酶和糖苷硫酸酯酶的海洋细菌假单胞菌的全细胞生物传感器,用于特异性和直接测定κ-卡拉胶,该传感器被描述。细菌细胞被固定在自塑化氢离子(H+)选择性丙烯酸盐膜电极表面,形成催化层。氢离子载体 I 被掺入聚(正丁基丙烯酸酯)[聚(nBA)]中作为 pH 氢离子载体。双酶级联反应使κ-卡拉胶催化分解,产生新琼脂糖、无机硫酸根离子和质子。后者可通过 H+离子传感器检测,用于间接电位法定量测定κ-卡拉胶浓度。使用一次性丝网印刷银/氯化银电极(SPE)无需清洗要求,并能方便地进行κ-卡拉胶检测,而不会在复杂的食品样品中发生交叉污染。基于 SPE 的微生物生物传感器的响应具有良好的重现性,重现性高,相对标准偏差(RSD)为 2.6%(n = 3)。全细胞生物传感器在 pH 7.5 的 20 mM 磷酸盐缓冲盐水(PBS)中对 0.2-100 ppm 的κ-卡拉胶表现出宽的动态线性响应范围,检测限为 0.05 ppm,Nernst 灵敏度为 58.78±0.87 mV/decade(R2 = 0.995)。与测试的其他类型卡拉胶(如 ι-卡拉胶和 λ-卡拉胶)相比,该生物传感器对 κ-卡拉胶具有优异的选择性。当开发的全细胞生物传感器用于乳制品中κ-卡拉胶的直接测定时,无需对食品样品进行预处理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2bdc/6467376/6e24b8fe2ffc/pone.0214580.g001.jpg

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