Key Laboratory of Biochemical Analysis, Ministry of Education, College of Chemistry and Molecular Engineering, Qingdao University of Science and Technology, Qingdao 266042, China.
Biosens Bioelectron. 2013 Dec 15;50:368-72. doi: 10.1016/j.bios.2013.06.048. Epub 2013 Jul 8.
In this work, we prepared a new electrochemiluminescent signal probe using a small bifunctional composite quantum dot (QD) with intense electrochemiluminescence (ECL) and excellent magnetic property, and developed a sensitive ECL biosensor for detection of cancer cells via DNA cyclic amplification technique. The graphene oxide (GO) with unique electrical properties was used as nano-amplified platform to immobilize a large number of capture DNA (c-DNA1). The endonuclease-assisted amplification technique was applied to amplify the ECL signal change induced by target cells. Specifically, the bifunctional composite QDs with excellent magnetic property can be conveniently labeled, separated, and developed the ECL signal probe, thus an ECL method for rapid and sensitive detection of cancer cells was developed. So far, it is for the first time that the small magnetic electrochemiluminescent QDs were applied to the assays of cancer cells by using amplification strategy, which is expected to have great potential for early clinical diagnosis of cancer.
在这项工作中,我们使用具有强电化学发光(ECL)和优异磁性的新型双功能复合量子点(QD)制备了新的电化学发光信号探针,并通过 DNA 循环扩增技术开发了用于检测癌细胞的灵敏电化学发光生物传感器。具有独特电学性质的氧化石墨烯(GO)被用作纳米扩增平台来固定大量捕获 DNA(c-DNA1)。内切酶辅助扩增技术被应用于放大由靶细胞引起的 ECL 信号变化。具体来说,具有优异磁性的双功能复合 QD 可以方便地标记、分离和开发 ECL 信号探针,从而开发了用于快速灵敏检测癌细胞的 ECL 方法。到目前为止,这是首次将小磁性电化学发光 QD 通过放大策略应用于癌细胞的检测,这有望为癌症的早期临床诊断提供巨大潜力。