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FACS-based immunoassay of troponin-l using E. coli cells with autodisplayed Z-domains

机译:基于FACS的肌钙蛋白-1免疫测定,使用具有自动展示Z结构域的大肠杆菌细胞

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Fluorescence-activated cell sorter (FACS)-based immunoassays using E. coli cells with autodisplayed Z-domains were performed to (1) improve the sensitivity of the immunoassay through orientation control of antibodies with autodisplayed Z-domains and (2) minimize the required amount of analyte by using FACS to measure the fluorescent signal from individual E. coli cells. The expression (autodisplay) of Z-domains on the outer membrane of E. coli was confirmed by fluorescence image analysis, and the homogeneous distribution of autodisplayed Z-domains was presented by SEM image analysis after treatment with antibodies labeled with gold nanoparticles (diameter of 15 nm). As FACS measures the fluorescent signal from individual E. coli cells, the optimal FACS parameters for the effective detection of fluorescently labeled E. coli cells were determined, and the minimum amount of analyte required for the E. coli cell-based immunoassay was identified using two model immunoassay configurations. Finally, the medical diagnosis of heart infarction with a biomarker called troponin-l using the E. coli cell-based immunoassay with FACS analysis was demonstrated.
机译:进行了基于荧光激活细胞分选仪(FACS)的免疫分析,使用具有自动显示Z结构域的大肠杆菌细胞,以(1)通过对具有自动显示Z结构域的抗体的方向进行控制来提高免疫分析的灵敏度,以及(2)最小化所需的通过使用FACS测量来自单个大肠杆菌细胞的荧光信号来分析大量的分析物。通过荧光图像分析确认了大肠杆菌外膜上Z结构域的表达(自动显示),并在用金纳米颗粒标记的抗体处理后,通过SEM图像分析显示了自动显示的Z结构域的均匀分布。 15 nm)。当FACS测量来自单个大肠杆菌细胞的荧光信号时,确定了有效检测荧光标记的大肠杆菌细胞的最佳FACS参数,并使用以下方法鉴定了基于大肠杆菌细胞的免疫测定所需的最小分析物量两种模型的免疫分析配置。最后,证明了使用基于肌细胞的免疫分析和FACS分析,使用称为肌钙蛋白-1的生物标记物对心肌梗塞进行医学诊断。

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