State Key Laboratory of Natural Medicines, School of Science, China Pharmaceutical University , Nanjing 210009, China.
State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University , Nanjing, 210093, China.
Anal Chem. 2017 Oct 17;89(20):10957-10964. doi: 10.1021/acs.analchem.7b02765. Epub 2017 Sep 29.
With the growing demands of the early, accurate, and sensitive diagnosis for cancers, the development of new diagnostic technologies becomes increasingly important. In this study, we proposed a strategy for efficient capture and sensitive detection of circulating tumor cells (CTCs) using an array nanochannel-ion channel hybrid coupled with an electrochemical detection technique. The aptamer probe was immobilized on the ion channel surface to couple with the protein overexpressed on the CTCs membrane. Through this special molecular recognition, CTCs can be selectively captured. The trapped CTCs cover the ion channel entrance efficiently, which will dramatically block the ionic flow through channels, resulting in a varied mass-transfer property of the nanochannel-ion channel hybrid. On the basis of the changed mass-transfer properties, the captured CTCs can be sensitively detected using the electrochemical linear sweep voltammetry technique. Furthermore, due to the amplified response of array channels compared to that of a single channel, the detection sensitivity can be enhanced greatly. The results showed that acute leukemia CCRF-CEM (a type of CTC) concentration as low as 100 cells mL can be successfully captured and detected. The present method provides a simple, sensitive, and label-free technique for CTCs capture, detection, and release, which would hold great potential in the early clinical diagnosis and treatment of cancers.
随着对癌症早期、准确和敏感诊断的需求不断增长,开发新的诊断技术变得越来越重要。在本研究中,我们提出了一种使用阵列纳米通道-离子通道混合体结合电化学检测技术来有效捕获和敏感检测循环肿瘤细胞(CTC)的策略。适配体探针固定在离子通道表面上,与 CTC 膜上过度表达的蛋白质结合。通过这种特殊的分子识别,CTC 可以被选择性地捕获。捕获的 CTC 有效地覆盖离子通道入口,这将极大地阻断离子通过通道的流动,导致纳米通道-离子通道混合体的传质性质发生变化。基于传质性质的变化,可以使用电化学线性扫描伏安技术敏感地检测捕获的 CTC。此外,由于与单个通道相比,阵列通道的响应得到了放大,因此检测灵敏度可以大大提高。结果表明,能够成功捕获和检测浓度低至 100 个细胞 mL 的急性白血病 CCRF-CEM(一种 CTC)。本方法提供了一种简单、敏感、无标记的 CTC 捕获、检测和释放技术,在癌症的早期临床诊断和治疗中具有很大的潜力。