Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7229587 | Biosensors and Bioelectronics | 2018 | 18 Pages |
Abstract
Serotonin is one of the important neurotransmitters of our body. It's abnormal concentration is associated with multiple disorders and diseases. Sensitive and precise electrochemical determination of serotonin is not possible with bare working electrodes due to various reasons viz. electro-chemical fouling, presence of other biological molecules having similar oxidation potential, and lower concentration of serotonin in biological samples. Surface modification of working electrode is required for fast, precise, selective, and sensitive detection of serotonin. We have extensively reviewed the research approaches where serotonin has been sensitively detected using surface modified electrodes in the presence of other interfering agents. This review aims at presenting the electrochemical detection of serotonin using various surface modified electrodes such as glassy carbon, graphite, carbon fiber, diamond, screen printed, ITO, and metal electrodes modified with conducting polymers and polyelectrolytes, carbon nanomaterials, metal or metal oxide nanoparticles, biological compounds, and other conducting materials. The analytical figures of merits of various research approaches for detection of serotonin have been compared in the article. The properties of material used for surface modification, chemical interactions at the interfaces, and electrocatalytic effects of modified surfaces on sensing of serotonin have been thoroughly discussed in this review.
Keywords
AFM5-HTDPVTrpBDDCPECNTMIPTOCPEDOTChronoamperometryMWCNTSWCNTPSSAMPFePcSPE5-HTPASPSAMPGEβ-CyclodextrinALAGCECys5-hydroxytryptamineSMEFEG-SEMDOPACFSCVHPLC-ECD5-hydroxytryptophanECRPPDMELSWVADRCFMβ-CDCHTADSVPBDDCalf thymus-DNAOsteryoung square wave voltammetryTPyPAnodic stripping differential pulse voltammetrySWASVSurface modified electrodesPoly(N-acetylaniline)deoxyribo nucleic acid1-Butyl-3-methylimidazolium hexafluorophosphate3,4-dihydroxyphenylacetic acid5-Hydroxyindoleacetic acidAuNPsCt-DNADNAl-DOPAPANIPpsrGOadrenalineaspartateAscorbic acidalanineAmperometryAChAcetylcholineUric acidTartaric acidFolic acidglutamic acidboron doped diamondElectrocatalysisSurface modified electrodeCarbon paste electrodeScreen printed electrodeglassy carbon electrodePencil graphite electrodeEdge plane pyrolytic graphite electrodeCarbon ionic liquid electrodeEpinephrineIndium tin oxideGraphene oxideReduced graphene oxideEriochrome cyanine RITOHIAABAMEISTryptophanELISAEnzyme-linked immunosorbent assayElectrochemical detectionTocopherolTyrTyrosineThiophenolLOD یا Limit of detectionHISDopamineNano particlesSERTSerotoninserotonin transporterenterochromaffin cellsCysteineElectrochemical impedance spectroscopyIonic liquidlimit of detectionMelatoninCarbon fiber microelectrodeField Emission Gun Scanning Electron Microscopyatomic force microscopyGold nanoparticlesnorepinephrinehistidinefast scan cyclic voltammetryDifferential pulse voltammetryCyclic voltammetrySquare Wave VoltammetrySquare wave adsorptive stripping voltammetryPoly(o-phenylenediamine)Poly(sodium 4-styrenesulfonate)PolyanilineMolecularly imprinted polymerCarbon Nano TubeChronocoulometryCholineChitosanGrapheneGlyGlycineSelf assembled monolayer
Related Topics
Physical Sciences and Engineering
Chemistry
Analytical Chemistry
Authors
Shikha Sharma, Nidhi Singh, Vartika Tomar, Ramesh Chandra,