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基于脱辅基和全辅基转铁蛋白结合的癌症免疫传感器。

Cancer immunosensor based on apo and holo transferrin binding.

机构信息

Chemistry Department, Campus CEDETEG, State University of Midwest Paraná, Guarapuava, Brazil.

Department of Chemistry, Federal University of São Carlos, Washington Luis Road, km 235 Monjolinho, São Carlos, SP, 13565905, Brazil.

出版信息

Mikrochim Acta. 2020 Jul 10;187(8):438. doi: 10.1007/s00604-020-04420-6.

Abstract

An electrochemical immunosensor was developed for the determination of apo-Tf (non-iron-bound) and holo-Tf (iron-bound) using polyclonal antibody transferrin (anti-Tf) immobilized at an electrode surface as a biorecognition platform. The monitoring was based on the anti-Tf binding with both Tf forms which allows the detection of cancer cells due to the constant iron cycle and the overexpression of anti-Tf on the cancer cell surface. The immunosensor characterization was performed using electrochemical impedance spectroscopy (EIS), which evaluated the impedimetric biorecognition of the antigens-antibody by the use of KFe(CN) redox group. The immunosensor was able to detect both forms of Tf in terms of charge transfer resistance (R). Analytical curves showed a limit of detection of 0.049 and 0.053 ng mL for apo-Tf and holo-Tf, respectively. The immunosensor was applied to the detection of the two cancer cells A549 (lung carcinoma) and MCF-7 (breast carcinoma) and compared with BHK570, a healthy cell line. The impedimetric response of healthy cells differs significantly from that of the cancerous cells, as revealed by a Dunnett's test in 95% confidence level-ca. 10 cells mL-indicating the feasibility of the immunosensor to discriminate both types of cells. The indirect detection of anti-Tf based on apo-Tf and holo-Tf binding can be considered an advanced approach for cancer recognition. Graphical abstract.

摘要

一种电化学免疫传感器被开发出来,用于测定载脂蛋白-Tf(非铁结合)和全-Tf(铁结合),方法是将多克隆抗体转铁蛋白(抗-Tf)固定在电极表面作为生物识别平台。监测基于抗-Tf 与两种 Tf 形式的结合,由于铁循环的持续和癌细胞表面过表达的抗-Tf,允许检测癌细胞。免疫传感器的特性使用电化学阻抗谱(EIS)进行评估,该谱通过使用 KFe(CN) 氧化还原基团评估抗原-抗体的阻抗生物识别。该免疫传感器能够在电荷转移电阻(R)方面检测两种 Tf 形式。分析曲线显示载脂蛋白-Tf 和全-Tf 的检测限分别为 0.049 和 0.053ng mL。该免疫传感器被应用于两种癌细胞 A549(肺癌)和 MCF-7(乳腺癌)的检测,并与健康细胞系 BHK570 进行了比较。通过 Dunnett 检验在 95%置信水平-ca。10 个细胞 mL-表明该免疫传感器区分两种类型细胞的可行性,健康细胞的阻抗响应与癌细胞有显著差异。基于载脂蛋白-Tf 和全-Tf 结合的抗-Tf 的间接检测可以被认为是癌症识别的一种先进方法。

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