Motaghed Mazhabi Robabeh, Ge Liqin, Jiang Hui, Wang Xuemei
State Key Laboratory of Bioelectronics (Chien-Shiung Wu Laboratory), School of Biological Science and Medical Engineering, Southeast University, Nanjing 210096, China.
J Mater Chem B. 2018 Aug 21;6(31):5039-5049. doi: 10.1039/c8tb01067f. Epub 2018 Jul 31.
Facile and efficient detection of cancer cells in the early phases of the disease is one of the main challenges in cancer diagnostics. It has been found that photoactive materials and bio-recognition elements are two key factors in the development of promising photoelectrochemical (PEC) biosensors for cancer cell detection, which can play significant roles for realizing early cancer diagnostics with high sensitivity and selectivity. In this study, we designed a novel label-free PEC aptamer-based cytosensor for the specific detection of cancer cells such as HeLa cells by using water-dispersible g-CN-AgI nanocomposites as visible light-sensitive materials and anti-CEM/PTK7 aptamer as the bio-recognition element. It was observed that when a suitable amount of AgI nanoparticles was doped in two-dimensional graphite-like carbon nitride nano-sheets (g-CN NSs), the visible light photocurrent response could be significantly improved. The PEC response of the as-prepared biosensor based on the g-CN-AgI/ITO photoelectrode was linearly proportional to the relevant cancer cells such as HeLa cells at concentrations ranging from 10 to 10 cells per mL with a limit of detection of 5 cells per mL. In addition, the g-CN-AgI/ITO photoelectrode and the fabricated cytosensor exhibited long-term stability, good reproducibility, excellent selectivity, and high sensitivity, demonstrating the successful conjugation of g-CN-AgI NSs with the aptamer and target cancer cells in the high performance PEC cytosensor.
在疾病早期阶段简便高效地检测癌细胞是癌症诊断中的主要挑战之一。已发现光活性材料和生物识别元件是开发用于癌细胞检测的有前景的光电化学(PEC)生物传感器的两个关键因素,这对于实现高灵敏度和高选择性的早期癌症诊断可发挥重要作用。在本研究中,我们设计了一种新型的基于PEC适体的无标记细胞传感器,用于特异性检测癌细胞,如HeLa细胞,通过使用水分散性g-CN-AgI纳米复合材料作为可见光敏感材料,以及抗CEM/PTK7适体作为生物识别元件。据观察,当在二维石墨状氮化碳纳米片(g-CN NSs)中掺杂适量的AgI纳米颗粒时,可见光光电流响应可显著提高。基于g-CN-AgI/ITO光电极制备的生物传感器的PEC响应与HeLa细胞等相关癌细胞在每毫升10至10个细胞的浓度范围内呈线性比例关系,检测限为每毫升5个细胞。此外,g-CN-AgI/ITO光电极和制备的细胞传感器表现出长期稳定性、良好的重现性、优异的选择性和高灵敏度,证明了g-CN-AgI NSs与适体和靶癌细胞在高性能PEC细胞传感器中的成功结合。