An Ultrasensitive Electrochemical Immunosensor for Alpha-Fetoprotein Using an Envision Complex-Antibody Copolymer as a Sensitive Label
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Ping Xiong | Ning Gan | Tianhua Li | Yuting Cao | Futao Hu | Ning Gan | P. Xiong | Tianhua Li | Fu-Tao Hu | Yuting Cao | Lei Zheng | Lei Zheng
[1] J. Homola. Surface plasmon resonance sensors for detection of chemical and biological species. , 2008, Chemical reviews.
[2] Ruo Yuan,et al. Magnetic core-shell Fe3O4@Ag nanoparticles coated carbon paste interface for studies of carcinoembryonic antigen in clinical immunoassay. , 2006, The journal of physical chemistry. B.
[3] Seong-Wook Lee,et al. Targeted retardation of hepatocarcinoma cells by specific replacement of alpha-fetoprotein RNA. , 2007, Journal of biotechnology.
[5] Jun‐Jie Zhu,et al. A label-free cytosensor for the enhanced electrochemical detection of cancer cells using polydopamine-coated carbon nanotubes. , 2012, The Analyst.
[6] Chia-Chen Chang,et al. High-sensitivity detection of carbohydrate antigen 15-3 using a gold/zinc oxide thin film surface plasmon resonance-based biosensor. , 2010, Analytical chemistry.
[7] Sai Bi,et al. Gold nanolabels for new enhanced chemiluminescence immunoassay of alpha-fetoprotein based on magnetic beads. , 2009, Chemistry.
[8] D. Wong,et al. Self-assembled layer of thiolated protein G as an immunosensor scaffold. , 2007, Analytical chemistry.
[9] A. Riskin,et al. Alpha-fetoprotein in the early neonatal period--a large study and review of the literature. , 2004, Clinica chimica acta; international journal of clinical chemistry.
[10] X. Xia,et al. Electrochemically deposited nanocomposite film of CS-Fc/Au NPs/GOx for glucose biosensor application. , 2009, Biosensors & bioelectronics.
[11] Lun Wang,et al. Electrochemiluminescence immunosensor for α-fetoprotein using Ru(bpy)3(2+)-encapsulated liposome as labels. , 2011, Colloids and surfaces. B, Biointerfaces.
[12] Arben Merkoçi,et al. Rapid identification and quantification of tumor cells using an electrocatalytic method based on gold nanoparticles. , 2009, Analytical chemistry.
[13] Y. Chai,et al. Sandwich-type electrochemiluminescence immunosensor based on Ru-silica@Au composite nanoparticles labeled anti-AFP. , 2010, Talanta.
[14] P. Ruck,et al. A New Rapid Immunohistochemical Staining Technique Using the EnVision Antibody Complex , 2001, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[15] Guo-Li Shen,et al. A highly sensitive electrochemical immunosensor based on coral-shaped AuNPs with CHITs inorganic-organic hybrid film. , 2011, Talanta.
[16] Jun Liu,et al. Sensitive immunosensor for cancer biomarker based on dual signal amplification strategy of graphene sheets and multienzyme functionalized carbon nanospheres. , 2010, Analytical chemistry.
[17] Dianping Tang,et al. In situ amplified electrochemical immunoassay for carcinoembryonic antigen using horseradish peroxidase-encapsulated nanogold hollow microspheres as labels. , 2008, Analytical chemistry.
[18] Jun-Jie Zhu,et al. Fabrication of a novel impedance cell sensor based on the polystyrene/polyaniline/Au nanocomposite. , 2009, Talanta.
[19] Jiazhuo Peng. Synthesis of Ni@NiO Core - Shell Nanospheres and Application for Fabrication of Electrochemical Biosensor , 2012 .
[20] Jian-Ding Qiu,et al. A label-free amperometric immunosensor based on biocompatible conductive redox chitosan-ferrocene/gold nanoparticles matrix. , 2009, Biosensors & bioelectronics.
[21] Q. Zhang,et al. An electrochemical immunoassay for protein based on bio bar code method. , 2009, Biosensors & bioelectronics.
[22] Jing-Min Hwang,et al. Determination of alpha-fetoprotein in human serum by a quartz crystal microbalance-based immunosensor. , 2002, Clinical chemistry.
[23] Xiaoqiang Liu,et al. Square wave voltammetry versus electrochemical impedance spectroscopy as a rapid detection technique at electrochemical immunosensors. , 2010, Biosensors & bioelectronics.
[24] H. Iishi,et al. Value of serum alpha-fetoprotein and ferritin in the diagnosis of hepatocellular carcinoma. , 1986, Oncology.
[25] Jianlong Zhao,et al. Nano-ELISA for highly sensitive protein detection. , 2009, Biosensors & bioelectronics.
[26] Fengqing Yang,et al. A sensitive immunoassay for determination of hepatitis B surface antigen and antibody in human serum using capillary electrophoresis with chemiluminescence detection. , 2007, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences.
[27] Qingming Shen,et al. Graphene-CdS nanocomposites: facile one-step synthesis and enhanced photoelectrochemical cytosensing. , 2012, Chemistry.
[28] H. Ju,et al. Computational modeling Flow-injection chemiluminescent immunoassay for α-fetoprotein based on epoxysilane modified glass microbeads , 2006 .
[29] Yue Zhao,et al. Chemiluminescence immunoassay based on dual signal amplification strategy of Au/mesoporous silica and multienzyme functionalized mesoporous silica , 2011 .
[30] Jin Kyeong Kim,et al. Direct immobilization of protein g variants with various numbers of cysteine residues on a gold surface. , 2007, Analytical chemistry.
[31] Chunyan Yao,et al. Rapid and simultaneous quantification of 4 urinary proteins by piezoelectric quartz crystal microbalance immunosensor array. , 2006, Clinical chemistry.
[32] Yafeng Wu,et al. Enzyme-functionalized silica nanoparticles as sensitive labels in biosensing. , 2009, Analytical chemistry.
[33] H. Iwata,et al. Label-Free Immunosensing for α-Fetoprotein in Human Plasma using Surface Plasmon Resonance , 2007 .
[34] J Wang,et al. Electrochemical enzyme immunoassays on microchip platforms. , 2001, Analytical chemistry.