首页> 外文期刊>Analytical Biochemistry: An International Journal of Analytical and Preparative Methods >Development of quartz-crystal-microbalance-based immunosensor array for clinical immuno pheno typing of acute leukemias
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Development of quartz-crystal-microbalance-based immunosensor array for clinical immuno pheno typing of acute leukemias

机译:用于急性白血病临床免疫表型分型的基于石英晶体微天平的免疫传感器阵列的开发

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摘要

An integrated piezoelectric immunosensor array has been developed to immunophenotype acute leukemias in clinic. Each quaftz crystal microbalance (QCM) was fabricated with plasma-polymerized film of n-butylamine, nanogold particles, and protein A (PA) to be used to immobilize antibodies in orientation. Leukemic lineage-associated monoclonal antibodies were separately immobilized onto the nanogold-PA-modified surface of the crystals, which were constructed by a 2 x 2 type of probes forming a QCM-based immunosensor array. The main detection conditions were investigated, including the immobilization amount of antibodies, pH, immunoreaction time, sample dilution ratio, etc. The immunophenotyping feasibility of the new technique was investigated through simultaneously analyzing Jurkat cells by the immunosensor array method, inimunohistochemistry, and flow cytometry. It was found that the developed technique Could readily identify leukemia samples in 5 min and might monitor dynamically the immunoreaction processes. Moreover, comparison studies were carried out for CID antigens expressed on the nucleated cells isolated from 96 acute leukemic patients and 24 normal subjects using the QCM-based immunosensor method and the fluoroimmunoassay. Results obtained by immunophenotyping patients' samples with the immunosensor-based method achieved the rate of 88.93% in 768 groups of numerical data, where no significant statistical difference was observed between the two methods when checked by chi(2) analysis (chi(2) = 3.4, p & 0.05). This new immunosensor array showed the merits of high sensitivity, high specificity, good reproducibility, easy operation, and low cost. The results of specimen evaluation indicated that it might be clinically suitable for quantifying human differentiated leukocytes and immunophenotyping of acute leukemias. (c) 2005 Elsevier Inc. All rights reserved.
机译:集成的压电免疫传感器阵列已被开发用于在临床上对急性白血病进行免疫表型分析。每个quaftz晶体微量天平(QCM)均由正丁胺,纳米金颗粒和蛋白A(PA)的等离子聚合膜制成,用于将抗体固定在方向上。白血病谱系相关的单克隆抗体分别固定在晶体的纳米金-PA修饰的表面上,该晶体由2×2类型的探针构成,形成基于QCM的免疫传感器阵列。研究了主要的检测条件,包括抗体的固定量,pH,免疫反应时间,样品稀释率等。通过免疫传感器阵列方法,免疫组织化学和流式细胞仪同时分析Jurkat细胞,研究了新技术的免疫表型可行性。 。已发现,开发的技术可以在5分钟内轻松识别出白血病样本,并可以动态监控免疫反应过程。此外,使用基于QCM的免疫传感器方法和荧光免疫分析法对从96例急性白血病患者和24例正常受试者分离的有核细胞上表达的CID抗原进行了比较研究。通过基于免疫传感器的方法对患者样品进行免疫表型分析获得的结果在768组数值数据中达到了88.93%的比率,当通过chi(2)分析检查时,两种方法之间没有观察到显着的统计学差异(chi(2) = 3.4,p> 0.05)。这种新型免疫传感器阵列具有高灵敏度,高特异性,可重复性好,操作简便和成本低廉的优点。标本评估的结果表明,它可能在临床上适用于量化人类分化的白细胞和急性白血病的免疫表型。 (c)2005 Elsevier Inc.保留所有权利。

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