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Enhancement of Heterogeneous Assays Using Fluorescent Magnetic Liposomes

机译:使用荧光磁性脂质体增强异构测定

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Interactions between solution phase analytes and surface immobilized biorecognition elements in heterogeneous binding assay formats, such as enzyme-linked immunosorbent assays (ELISAs), are often hindered by mass transfer limitations. In order to improve detection limits and decrease assay times, an applied magnetic field can be used to promote target binding events if the species used for signal generation is rendered magnetic. Here, a ferromagnetic metal oxide-oleic acid complex was incorporated into the lipid bilayer of fluorescent dye-encapsulating liposomes, allowing for their influence under a magnetic field while maintaining their high interior encapsulation volume for signaling molecules. In a high-throughput sandwich-hybridization assay, these DNA-tagged liposomes yielded enhanced sensitivity, in addition to reduced assay times and reagent concentrations, when used with an underlying magnet. These magnetic signaling reagents offer superior performance and adaptability to standard assay formats.
机译:传质限制通常会阻碍溶液相分析物和表面固定的生物识别元件之间以异质结合测定形式(如酶联免疫吸附测定(ELISA))之间的相互作用。为了提高检测限并减少测定时间,如果使用于信号产生的物质具有磁性,则可以使用施加的磁场来促进靶标结合事件。在此,将铁磁金属氧化物-油酸复合物掺入荧光染料包封脂质体的脂质双层中,从而使其在磁场下产生影响,同时保持其高内在包封分子的信号传导分子体积。在高通量夹心杂交实验中,与基础磁体一起使用时,这些DNA标记的脂质体除缩短了测定时间和减少了试剂浓度外,还提高了灵敏度。这些磁性信号试剂具有出色的性能和对标准测定形式的适应性。

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