Aptamer cell sensor based on porous graphene oxide decorated ion-selective-electrode: Double sensing platform for cell and ion. 2018

Rong Zhang, and Yajun Gu, and Zhongrong Wang, and Yueguo Li, and Qingjie Fan, and Yunfang Jia
College of Electronic Information and Optical Engineering, Nankai University, Tianjin, China.

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/log10CA549 (R2 = 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 (R2 = 0.95, pI = -log10(CI)). 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.

UI MeSH Term Description Entries
D010087 Oxides Binary compounds of oxygen containing the anion O(2-). The anion combines with metals to form alkaline oxides and non-metals to form acidic oxides. Oxide
D002477 Cells The fundamental, structural, and functional units or subunits of living organisms. They are composed of CYTOPLASM containing various ORGANELLES and a CELL MEMBRANE boundary. Cell
D004563 Electrochemistry The study of chemical changes resulting from electrical action and electrical activity resulting from chemical changes. Electrochemistries
D006108 Graphite An allotropic form of carbon that is used in pencils, as a lubricant, and in matches and explosives. It is obtained by mining and its dust can cause lung irritation. Graphene
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000072283 A549 Cells An immortalized cell line derived from human ADENOCARCINOMA, ALVEOLAR basal epithelial cells isolated from the lungs of a male patient in 1972. The cell line is positive for KERATIN, can synthesize LECITHIN, and contains high levels of POLYUNSATURATED FATTY ACIDS in its PLASMA MEMBRANE. It is used as a model for PULMONARY ALVEOLI function and virus infections, as a TRANSFECTION host, and for PRECLINICAL DRUG EVALUATION. A549 Cell Line,A549 Cell,A549 Cell Lines,Cell Line, A549,Cell Lines, A549,Cell, A549,Cells, A549
D015374 Biosensing Techniques Any of a variety of procedures which use biomolecular probes to measure the presence or concentration of biological molecules, biological structures, microorganisms, etc., by translating a biochemical interaction at the probe surface into a quantifiable physical signal. Bioprobes,Biosensors,Electrodes, Enzyme,Biosensing Technics,Bioprobe,Biosensing Technic,Biosensing Technique,Biosensor,Electrode, Enzyme,Enzyme Electrode,Enzyme Electrodes,Technic, Biosensing,Technics, Biosensing,Technique, Biosensing,Techniques, Biosensing
D017736 Ion-Selective Electrodes Electrodes which can be used to measure the concentration of particular ions in cells, tissues, or solutions. Electrodes, Ion-Selective,Ion Selective Electrode,Ion-Sensitive Electrode,Ion-Sensitive Electrodes,Electrode, Ion Selective,Electrode, Ion-Selective,Electrode, Ion-Sensitive,Electrodes, Ion Selective,Electrodes, Ion-Sensitive,Ion Selective Electrodes,Ion Sensitive Electrode,Ion Sensitive Electrodes,Ion-Selective Electrode,Selective Electrode, Ion,Selective Electrodes, Ion

Related Publications

Rong Zhang, and Yajun Gu, and Zhongrong Wang, and Yueguo Li, and Qingjie Fan, and Yunfang Jia
June 2020, Sensors (Basel, Switzerland),
Rong Zhang, and Yajun Gu, and Zhongrong Wang, and Yueguo Li, and Qingjie Fan, and Yunfang Jia
June 2020, ACS sensors,
Rong Zhang, and Yajun Gu, and Zhongrong Wang, and Yueguo Li, and Qingjie Fan, and Yunfang Jia
December 2013, Analytical biochemistry,
Rong Zhang, and Yajun Gu, and Zhongrong Wang, and Yueguo Li, and Qingjie Fan, and Yunfang Jia
January 2019, Nanomaterials (Basel, Switzerland),
Rong Zhang, and Yajun Gu, and Zhongrong Wang, and Yueguo Li, and Qingjie Fan, and Yunfang Jia
July 2019, Scientific reports,
Rong Zhang, and Yajun Gu, and Zhongrong Wang, and Yueguo Li, and Qingjie Fan, and Yunfang Jia
June 2015, Biosensors & bioelectronics,
Rong Zhang, and Yajun Gu, and Zhongrong Wang, and Yueguo Li, and Qingjie Fan, and Yunfang Jia
June 2019, RSC advances,
Rong Zhang, and Yajun Gu, and Zhongrong Wang, and Yueguo Li, and Qingjie Fan, and Yunfang Jia
September 2016, Scientific reports,
Rong Zhang, and Yajun Gu, and Zhongrong Wang, and Yueguo Li, and Qingjie Fan, and Yunfang Jia
May 2022, Journal of fluorescence,
Rong Zhang, and Yajun Gu, and Zhongrong Wang, and Yueguo Li, and Qingjie Fan, and Yunfang Jia
April 2022, Sensors (Basel, Switzerland),
Copied contents to your clipboard!