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DNA 构象调控血红素开关用于杂交瘤细胞分泌的抗体的芯片上化学发光检测。

DNA Conformation-Regulated Hemin Switch for Lab-on-Chip Chemiluminescent Detection of an Antibody Secreted from Hybridoma Cells.

机构信息

State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210023, China.

出版信息

Anal Chem. 2024 Nov 19;96(46):18502-18509. doi: 10.1021/acs.analchem.4c04122. Epub 2024 Nov 6.

Abstract

This work designed a DNA conformation-regulated hemin switch for rapid chemiluminescent (CL) detection of a monoclonal antibodies. This switch was performed with an affinity probe and an inhibition probe, which were conveniently prepared by hybridizing hemin-labeled DNA1 with KHL peptide-labeled DNA2 and binding biotin-labeled DNA3 to streptavidin, respectively. In the absence of the target antibody, streptavidin-DNA3 could hybridize with hemin-DNA1/KHL-DNA2 to release KHL-DNA2, which led to the loss of hemin activity due to the affinity hindrance of streptavidin-DNA3. After the KHL peptide was recognized by the target antibody, the strand replacement hybridization could be inhibited by the bound antibody, which retained the high catalytic activity of hemin overhung on the antibody-bound affinity probe for a CL reaction, leading to a "signal-on" process for CL antibody detection. Using a KHL-specific antibody, anti-proprotein convertase subtilisin/kexin type 9 antibody (PCSK9-Ab), as a target model and common L012-1,2,4-triazole-HO CL system, the designed switch showed a detection range of 10 ng mL to 1 μg mL with a detection limit of 4.16 ng mL (56.2 pM) and a short analytical time of 6.5 min. The proposed quick method could simply be used for lab-on-chip CL detection of PCSK9-Ab in situ-secreted from PCSK9-6E3 hybridoma cells, which showed an accuracy of 90.2% compared with the statistical results from general fluorescence imaging, providing a potential technique for screening specific hybridoma cells.

摘要

这项工作设计了一种 DNA 构象调控的血红素开关,用于快速化学发光(CL)检测单克隆抗体。该开关由亲和探针和抑制探针组成,通过将血红素标记的 DNA1 与 KHL 肽标记的 DNA2 杂交,以及将生物素标记的 DNA3 结合到链霉亲和素上,分别方便地制备了这两种探针。在没有目标抗体的情况下,链霉亲和素-DNA3 可以与血红素-DNA1/KHL-DNA2 杂交,释放 KHL-DNA2,由于链霉亲和素-DNA3 的亲和阻碍,导致血红素活性丧失。当 KHL 肽被目标抗体识别后,结合的抗体可以抑制链置换杂交,从而保留结合在抗体上的亲和探针上的血红素的高催化活性,用于 CL 反应,导致 CL 抗体检测的“信号开启”过程。使用一种针对 KHL 的特异性抗体,即前蛋白转化酶枯草溶菌素/糜蛋白酶 9 型抗体(PCSK9-Ab)作为目标模型和常见的 L012-1,2,4-三唑-HO CL 系统,该设计的开关显示出 10 ng mL 至 1 μg mL 的检测范围,检测限为 4.16 ng mL(56.2 pM),分析时间短至 6.5 分钟。该快速方法可简单地用于 PCSK9-Ab 的现场分泌,在芯片上进行 CL 检测,该方法来自 PCSK9-6E3 杂交瘤细胞,与一般荧光成像的统计结果相比,准确性达到 90.2%,为筛选特定的杂交瘤细胞提供了一种潜在的技术。

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