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首页> 外文期刊>Analytica chimica acta >Label-free capacitive immunosensors for ultra-trace detection based on the increase of immobilized antibodies on silver nanoparticles
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Label-free capacitive immunosensors for ultra-trace detection based on the increase of immobilized antibodies on silver nanoparticles

机译:基于银纳米颗粒上固定抗体的增加的超标记检测用无标记电容式免疫传感器

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摘要

Detection of ultra-trace amounts of antigens by label-free capacitive immunosensors was investigated using electrodes modified with silver nanoparticles (AgNPs) that allows for an increase in the amount of immobilized antibodies. The optimal amount of AgNPs that provided the highest immobilization yield was 48 pmol (in 2.0 mL). The performances of immunosensor electrodes for human serum albumin prepared with AgNPs, were compared to electrodes prepared with gold nanoparticles. The two systems provided the same linear range (1.0 × 10~(-18) to 1.0 × 10~(-10) M) and detection limit (1.0 × 10~(-18) M). The system with AgNPs was used to analyze albumin in urine samples and the results agreed well with the immunoturbidimetric assay (P>0.05). Electrodes modified with AgNPs and appropriate antibodies were tested for their performances to detect analytes of different sizes. For a macromolecule (human serum albumin) the incorporation of AgNPs improved the detection limit from 100 to 1 aM. For small molecules, microcystin-LR and penicillin G, the detection limits were lowered from 100 and 10 fM to 10 and 0.7 fM, respectively. The high sensitivity and very low detection limits are potentially useful for the analysis of toxins or residues present in samples at ultra-trace levels and this method could easily be applied to other affinity pairs.
机译:使用无银标签的电容式免疫传感器检测超痕量抗原的方法是使用修饰有银纳米颗粒(AgNPs)的电极进行的,该电极可以增加固定抗体的数量。提供最高固定产率的AgNP的最佳量为48 pmol(在2.0 mL中)。将用AgNPs制备的人血清白蛋白免疫传感器电极的性能与用金纳米颗粒制备的电极进行了比较。两个系统提供相同的线性范围(1.0×10〜(-18)M至1.0×10〜(-10)M)和检测极限(1.0×10〜(-18)M)。带有AgNPs的系统用于尿样中白蛋白的分析,结果与免疫比浊法吻合良好(P> 0.05)。测试了用AgNPs和适当抗体修饰的电极的性能,以检测不同大小的分析物。对于大分子(人血清白蛋白),AgNP的掺入将检测限从100 aM提高到1 aM。对于小分子微囊藻毒素-LR和青霉素G,检测限分别从100和10 fM降低到10和0.7 fM。高灵敏度和极低的检测限可能对分析超痕量样品中的毒素或残留物有用,并且该方法可轻松应用于其他亲和力对。

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