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首页> 外文期刊>Preparative Biochemistry and Biotechnology >A NOVEL BIOSENSOR BASED ON Lactobacillus acidophilus FOR DETERMINATION OF PHENOLIC COMPOUNDS IN MILK PRODUCTS AND WASTEWATER
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A NOVEL BIOSENSOR BASED ON Lactobacillus acidophilus FOR DETERMINATION OF PHENOLIC COMPOUNDS IN MILK PRODUCTS AND WASTEWATER

机译:一种基于嗜酸乳杆菌的新型生物传感器,用于测定奶制品和废水中的酚类化合物

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Different branches of industry need to use phenolic compounds (PCs) in their production, so determination of PCs sensitively, accurately, rapidly, and economically is very important. For the sensitive determination of PCs, some biosensors based on pure polyphenol oxidase, plant tissu,e and microorganisms were developed before. But there has been no study to develop a microbial phenolic compounds biosensor based on Lactobacillus species, which contain polyphenol oxidase enzyme. In this study, we used different forms of Lactobacillus species as enzyme sources of biosensor and compared biosensor performances of these forms for determination of PCs. For this purpose, we used lyophilized Lactobacillus cells (containing L. bulgaricus, L. acidophilus, Streptococcus thermophilus), pure L. acidophilus, pure L. bulgaricus, and L. acidophilus- and L. bulgaricus adapted to catechol in Lactobacilli MRS Broth. The most suitable form was determined and optimization studies of the biosensor were carried out by using this form. For preparing the bioactive layer of the biosensor, the Lactobacillus cells were immobilized in gelatin by using glutaraldehyde. In the study, we used catechol as a substrate. Phenolic compound determination is based on the assay of the differences on the respiration activity of the cells on the oxygen meter in the absence and the presence of catechol. The microbial biosensor response depends directly on catechol concentration between 0.5 and 5.0 mM with 18 min response time. In the optimization studies of the microbial biosensor the most suitable microorganism amount was found to be 10 mg, and also phosphate buffer (pH 8.0; 50 mM) and 37.5°C were obtained as the optimum working conditions. In the characterization studies of the microbial biosensor some parameters such as substrate specificity on the biosensor response and operational and storage stability were examine. Furthermore, the determination of PC levels in synthetic wastewater, industrial wastewater, and milk products was investigated by using the developed biosensor under optimum conditions.View full textDownload full textKeywordsbiosensor, Lactobacillius acidophilus , oxygen electrode, phenolic compound, probioticsRelated var addthis_config = { ui_cobrand: "Taylor & Francis Online", services_compact: "citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,more", pubid: "ra-4dff56cd6bb1830b" }; Add to shortlist Link Permalink http://dx.doi.org/10.1080/10826068.2010.540607
机译:不同行业的生产中都需要使用酚类化合物(PC),因此,灵敏,准确,快速和经济地确定PC十分重要。为了灵敏地测定PC,以前开发了一些基于纯多酚氧化酶,植物组织和微生物的生物传感器。但是,尚未有研究开发基于乳杆菌种的包含多酚氧化酶的微生物酚类生物传感器。在这项研究中,我们使用了不同形式的乳酸杆菌属作为生物传感器的酶源,并比较了这些形式的生物传感器性能来确定PC。为此,我们使用了冻干的乳杆菌细胞(包含保加利亚乳杆菌,嗜酸乳杆菌,嗜热链球菌),纯嗜酸乳杆菌,纯保加利亚乳杆菌以及嗜酸乳杆菌和保加利亚乳杆菌,它们适合于乳酸杆菌MRS肉汤中的儿茶酚。确定了最合适的形式,并使用该形式进行了生物传感器的优化研究。为了制备生物传感器的生物活性层,通过使用戊二醛将乳杆菌细胞固定在明胶中。在研究中,我们使用儿茶酚作为底物。酚类化合物的测定是基于在不存在和存在儿茶酚的情况下,在氧气计上测定细胞呼吸活性的差异。微生物生物传感器的响应直接取决于0.5分钟和5.0毫米之间的儿茶酚浓度与18分钟的响应时间。在微生物生物传感器的优化研究中,最合适的微生物数量为10 mg,并且磷酸盐缓冲液(pH 8.0; 50 mM)和37.5°C被获得为最佳工作条件。在微生物生物传感器的表征研究中,研究了一些参数,例如对生物传感器响应的底物特异性以及操作和存储稳定性。此外,在最佳条件下使用开发的生物传感器研究了合成废水,工业废水和奶制品中PC含量的测定。查看全文下载全文关键词生物传感器,嗜酸乳杆菌,氧电极,酚类化合物,益生菌相关变量var addthis_config = {ui_cobrand: “泰勒和弗朗西斯在线”,services_compact:“ citeulike,netvibes,twitter,technorati,delicious,linkedin,facebook,stumbleupon,digg,google,更多”,发布:“ ra-4dff56cd6bb1830b”};添加到候选列表链接永久链接http://dx.doi.org/10.1080/10826068.2010.540607

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