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Immunomagnetic Diffractometry for Detection of Diagnostic Serum Markers

机译:免疫磁衍射法用于诊断性血清标志物的检测

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摘要

We describe an integrated approach for detection of diagnostic markers using in situ assembled optical diffraction gratings in combination with immunomagnetic capture. Folate receptor (FR), a serum protein indicative of various cancers, was chosen as a model system to demonstrate the potential of the method. Magnetic beads coupled to FR antibody were used to capture FR from serum. The FR-bound magnetic beads self-assembled onto microcontact-printed folate-coupled BSA (F-BSA) patterns to form diffraction gratings which served to detect FR by measuring the diffraction intensities caused by laser illumination. The FR-containing beads, upon binding to the F-BSA surface, served as intrinsic signal enhancement agents, circumventing the need for additional enzymatic signal amplification or fluorescent labeling steps. With this approach, a detection sensitivity of 700 fM (20 pg/mL) was achieved. The potential use of this approach in clinical diagnostics was demonstrated by measuring FR concentration in blood samples obtained from cancer patients.
机译:我们描述了使用原位组装的光学衍射光栅结合免疫磁捕获技术来检测诊断标志物的综合方法。选择叶酸受体(FR)(一种指示各种癌症的血清蛋白)作为模型系统,以证明该方法的潜力。使用与FR抗体偶联的磁珠从血清中捕获FR。结合FR的磁珠自组装到微接触印刷的叶酸偶联BSA(F-BSA)图案上,形成衍射光栅,通过测量由激光照射引起的衍射强度来检测FR。含FR的珠子在与F-BSA表面结合后用作内在信号增强剂,从而避免了对其他酶促信号放大或荧光标记步骤的需要。通过这种方法,检测灵敏度达到了700 fM(20 pg / mL)。通过测量从癌症患者获得的血液样本中的FR浓度,证明了该方法在临床诊断中的潜在用途。

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