首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Aptamer cell sensor based on porous graphene oxide decorated ion-selective-electrode: Double sensing platform for cell and ion
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Aptamer cell sensor based on porous graphene oxide decorated ion-selective-electrode: Double sensing platform for cell and ion

机译:基于多孔石墨烯氧化物的适体细胞传感器装饰离子选择性电极:用于细胞和离子的双传感平台

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摘要

Enlightened by the emerging cell-ion detection based on ion-selective-electrode (ISE), an aptamer capturing and ISE transducing (AC&IT) strategy is proposed on the porous graphene oxide (PGO) decorated ISE (PGO-ISE), its performances in both cell and ion detections are examined by use of AS1411 targeted A549 cell detection and iodide-ISE as proof-of-concept. Firstly, GO flakes, exfoliated from graphite by modified Hummers method, are cross-linked by thiourea mediated hydrothermal process, to 3-dimension networked PGO which is identified by scanning-electron-microscope, UV-visible absorbance and X-ray photoelectron spectroscopy; its enhancing effect for cell capturing is evaluated by microscopy. Then, PGO-ISE is constructed by drop-coating PGO film on the surface of ISE and followed by covalently anchoring AS1411. Electrochemistry measurements for different state ISE (blank, PGO coated, AS1411 anchored and A549 captured) are performed by our home-made ISE-measuring system. It is demonstrated that the best cell-sensitivity in buffer is - 25.21 mV/log(10)C(A549) (R-2 = 0.91), resolution in blood is 10 cells/ml. Interestingly, due to PGO's scaffold protection to the ionophore, I-sensitivity is preserved as - 42.98 mV/pI (R-2 = 0.95, pI = -log(10)(C-I)). Theoretical explanations are provided for the double-sensing phenomenon according to basic ISE principle. It is believed the PGO-ISE based aptamer cell sensor will be a promising experimental means for biomedical researches.
机译:通过基于离子选择电极(ISE)的新出现的细胞离子检测,在多孔石墨烯氧化物(PGO)上提出了一种适应性捕获和ISE转换(AC&IT)策略(Pgo-ISE),其性能通过使用AS1411靶向A549细胞检测和碘化物作为概念验证,检查细胞和离子检测。首先,通过改性悍马方法从石墨中剥离的去薄片,通过硫脲介导的水热过程交联,通过扫描 - 电子显微镜,UV可见光吸光度和X射线光电子能谱鉴定为3维网PGO。通过显微镜评估其对细胞捕获的增强效果。然后,PGO-ISE通过在ISE表面上的滴涂层PGO膜构成,然后共价锚固AS1411。通过我们自制的ISE测量系统执行不同状态ISE(涂布的空白,涂层,AS1411和A549)的电化学测量。证明缓冲液中最佳的细胞敏感性为-25.21mV / log(10)c(a549)(r-2 = 0.91),血液中的分辨率为10个细胞/ ml。有趣的是,由于PGO的离子载体的支架保护,I敏感性保持为-22.98mV / pi(R-2 = 0.95,Pi = -log(10)(C-I))。根据基本ISE原则提供了对双感测现象提供的理论解释。据信PGO-ISE基适体细胞传感器将是生物医学研究的有希望的实验手段。

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