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Double-site recognition of Staphylococcus aureus using a metal-organic framework material with an alkaline hydrolysis property as a sensitive fluorescent probe

机译:Double-site承认金黄色葡萄球菌使用有机框架材料的碱性水解财产作为一个敏感荧光探针

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A metal-organic framework (MOF) material was prepared from 2-aminoterephthalic acid and aluminum chloride with a solvothermal synthesis protocol. The as-prepared MOF material named NH2-MIL-53(Al) emitted a very intensive fluorescent (FL) signal after it was hydrolyzed in alkaline solution for releasing numerous FL ligands NH2-H2BDC. Thus it can be considered as a sensitive FL probe for studying biorecognition events. In this proof-of-principle work, a double-site recognition method was established to quantify Staphylococcus aureus (S. aureus) relying on the alkaline hydrolysis property of the MOF material. In particular, magnetic beads (MBs) modified with pig IgG were adopted for binding S. aureus based on the strong affinity between pig IgG and protein A on the bacterial surface. Meanwhile, MOF NH2-MIL-53(Al)-tagged teicoplanin (TEI) was adopted for tracing the target bacteria. By hydrolyzing the MOF material bound on the MBs to trigger the FL signal, S. aureus can be quantified with a dynamic range of 3.3 x 10(3)-3.3 x 10(7) CFU mL(-1) and a detection limit of 5.3 x 10(2) CFU mL(-1) (3 sigma). The method can exclude efficiently the interference from other common bacteria. It has been applied to quantify S. aureus in saliva, pomegranate green tea, glucose injection and milk samples with satisfactory results, verifying the application potential for analyzing various types of real samples contaminated with S. aureus.
机译:(MOF)有机框架材料从2-aminoterephthalic酸和准备氯化铝solvothermal合成协议。NH2-MIL-53 (Al)发出一个非常密集荧光(FL)水解后的信号在碱性溶液释放大量FL配体NH2-H2BDC。研究biorecognition的敏感FL探针事件。double-site建立了识别方法量化金黄色葡萄球菌(金黄色葡萄球菌)依赖的碱性水解特性MOF材料。(MBs)修改与猪免疫球蛋白被采用绑定金黄色葡萄球菌基于强大的亲和力猪免疫球蛋白和蛋白质之间的细菌表面。teicoplanin (TEI)是采用跟踪目标细菌。绑定在FL MBs触发信号,S。球菌可以量化的动态范围3.3 x 10 (3) -3.3 x 10 (7) CFU毫升(1)和一个检测极限的5.3 x 10 (2) CFU毫升(1)(3σ)。干扰其他常见细菌。被应用到量化唾液中金黄色葡萄球菌,石榴绿茶,葡萄糖注射液和牛奶样品令人满意的结果,验证分析不同类型应用的潜力真正的样品含有金黄色葡萄球菌。

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