Electrochemical immunosensor for prostate-specific antigens using a label-free second antibody based on silica nanoparticles and polymer brush
Tài liệu tham khảo
Balk, 2003, Biology of prostate-specific antigen, J. Clin. Oncol., 21, 383, 10.1200/JCO.2003.02.083
Holmstrom, 2009, Prostate specific antigen for early detection of prostate cancer: longitudinal study, Br. Med. J., 339, 1, 10.1136/bmj.b3537
Sanchez, 2004, Disposable noncompetitive immunosensor for free and total prostate-specific antigen based on capacitance measurement, Anal. Chem., 76, 5649, 10.1021/ac0494937
Sanchez, 2004, Quantitative impedimetric immunosensor for free and total prostate specific antigen based on a lateral flow assay format, Electrochem. Commun., 6, 138, 10.1016/j.elecom.2003.11.002
Wenga, 2013, Label-free electrochemical immunosensor based on K3[Fe(CN)6] as signal for facile and sensitive determination of tumor necrosis factor-alpha, Sensors Actuators B, 184, 1, 10.1016/j.snb.2013.03.141
Nam, 2012, Highly sensitive electrochemical detection of proteins using aptamer-coated gold nanoparticles and surface enzyme reactions, Analyst, 137, 2011, 10.1039/c2an15994e
Hu, 2010, In situ surface plasmon resonance investigation of the assembly process of multiwalled carbon nanotubes on an alkanethiol self-assembled monolayer for efficient protein immobilization and detection, Langmuir, 26, 8386, 10.1021/la9048105
Hucknall, 2009, Simple fabrication of antibody microarrays on nonfouling polymer brushes with femtomolar sensitivity for protein analytes in serum and blood, Adv. Mater., 21, 1968, 10.1002/adma.200803125
Ma, 2006, Surface-initiated atom transfer radical polymerization of oligo(ethylene glycol) methyl methacrylate from a mixed self-assembled monolayer on gold, Adv. Funct. Mater., 16, 640, 10.1002/adfm.200500426
Welch, 2011, Polymer brushes for electrochemical biosensors, Soft Matter, 7, 297, 10.1039/C0SM00035C
Marin-Suarez, 2012, Atom-transfer radical polymerisation (ATRP) as a tool for the development of optical sensing phases, Isr. J. Chem., 52, 264, 10.1002/ijch.201100123
Barbey, 2009, Polymer brushes via surface-initiated controlled radical polymerization: synthesis, characterization, properties, and applications, Chem. Rev., 109, 5427, 10.1021/cr900045a
Hu, 2010, Poly[oligo(ethylene glycol) methacrylate-co–glycidyl methacrylate] brush substrate for sensitive surface plasmon resonance imaging protein arrays, Adv. Funct. Mater., 20, 3497, 10.1002/adfm.201001159
Orski, 2010, High density scaffolding of functional polymer brushes: surface initiated atom transfer radical polymerization of active esters, Langmuir, 26, 2136, 10.1021/la902553f
Privett, 2010, Electrochemical sensors, Anal. Chem., 82, 4723, 10.1021/ac101075n
Gong, 2012, Response behavior of diblock copolymer brushes in explicit solvent, J. Chem. Phys., 137, 154904, 10.1063/1.4757860
Ivanov, 2010, Amperometric biosensor based on a site-specific immobilization of acetylcholinesterase via affinity bonds on a nanostructured polymer membrane with integrated multiwall carbon nanotubes, J. Mol. Catal. B Enzym., 63, 141, 10.1016/j.molcatb.2010.01.005
Lupu, 2013, Development of amperometric biosensors based on nanostructured tyrosinase-conducting polymer composite electrodes, Sensors, 13, 6759, 10.3390/s130506759
Tam, 2010, Reversible “closing” of an electrode interface functionalized with a polymer brush by an electrochemical signal, Langmuir, 26, 4506, 10.1021/la903527p
Lai, 2009, Surface characterization of immunosensor conjugated with gold nanoparticles based on cyclic voltammetry and X-ray photoelectron spectroscopy, Colloids Surf. B: Biointerfaces, 68, 130, 10.1016/j.colsurfb.2008.09.010
Wei, 2008, Synthesis of near-infrared responsive gold nanorod/PNIPAAm core/shell nanohybrids via surface initiated ATRP for smart drug delivery, Macromol. Rapid Commun., 29, 645, 10.1002/marc.200800009
Abu-Lail, 2006, Micro-cantilevers with end-grafted stimulus-responsive polymer brushes for actuation and sensing, Sensors Actuators B Chem., 114, 371, 10.1016/j.snb.2005.06.003
Li, 2007, Thermosensitive nanostructures comprising gold nanoparticles grafted with block copolymers, Adv. Funct. Mater., 17, 3134, 10.1002/adfm.200700427
Ohno, 2002, Synthesis of gold nanoparticles coated with well-defined, high-density polymer brushes by surface-initiated living radical polymerization, Macromolecules, 35, 8989, 10.1021/ma0209491
Liu, 2011, Sensitive protein microarray synergistically amplified by polymer brush-enhanced immobilizations of both probe and reporter, J. Colloid Interface Sci., 360, 593, 10.1016/j.jcis.2011.05.030
Rafique, 2013, Comparative study of label free electrochemical immunoassay on various gold nanostructures, J. Appl. Phys., 114, 164703, 10.1063/1.4827381
Liu, 2011, Highly sensitive poly[glycidyl methacrylate-co-poly(ethylene glycol)methacrylate] brush-based flow-through microarray immunoassay device, Biomed. Microdevices, 13, 769, 10.1007/s10544-011-9547-1
Wang, 2000, Two-dimentional ordered arrays of silicon nanoparticles, Chem. Mater., 12, 3662, 10.1021/cm990738j
Liu, 2007, Morphology-dependant electrochemistry and electroanalytical activity of cytochrome c, Langmuir, 23, 9487, 10.1021/la700817y
Kanta, 2003, Thermally- and photoinduced changes in the water wettability of low-surface-area silica and titania, Langmuir, 21, 2400, 10.1021/la047721m
Zhang, 2009, One-step and high-density protein immobilization on epoxysilane-modified silica nanoparticles, Chin. Sci. Bull., 54, 2620
Greenwood, 2011, Aqueous silane modified silica sols: theory and preparation, Pigment & Resin Technol., 40, 275, 10.1108/03699421111176171
Yang, 2004, interdigitated array microelectrode based electrochemical impedance immunosensor for detection of Escherichia coli, Anal. Chem., 76, 1107, 10.1021/ac0352575
Wang, 2008, Bioconjugated silica nanoparticles: development and applications, Nano Res., 1, 99, 10.1007/s12274-008-8018-3
Zhou, 2004, Probing the responsive behavior of polyelectrolyte brushes using electrochemical impedance spectroscopy, Anal. Chem., 79, 176, 10.1021/ac061332a
Li, 2005, Impendance labeless detection-based polypyrrole protein biosensor, Front. Biosci., 10, 2518, 10.2741/1716
Rezaei, 2009, Immobilization of specific monoclonal antibody on Au nanoparticles for hGH detection by electrochemical impedance spectroscopy, Biosens. Bioelectron., 35, 395, 10.1016/j.bios.2009.07.026
Hu, 2013, Sensitive competitive immunoassay of multiple mycotoxins with non-fouling antigen microarray, Biosens. Bioelectron., 50, 338, 10.1016/j.bios.2013.06.037
Gretzer, 2002, PSA levels and the detection rate of prostate cancer on biopsy, Eur. Urol., 1, 21, 10.1016/S1569-9056(02)00053-2
Leibovici, 2005, PSA elevation during prostate cryosurgery and subsequent decline, Urol. Oncol., 23, 8, 10.1016/j.urolonc.2004.06.005
Qu, 2008, A novel electrochemical immunosensor based on colabeled silica nanoparticles for determination of total prostate specific antigen in human serum, Talanta, 76, 785, 10.1016/j.talanta.2008.04.026