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Nanomaterial-based sensing systems to detect neuropharmaceutical compounds and neurotransmitters

dc.contributor.authorBakhshpour-Yucel, Monireh
dc.contributor.authorAljayyousi, Nawal
dc.contributor.authorOsman, Bilgen
dc.contributor.authorÜnlü, Neşe Lortlar
dc.contributor.authorDenizli, Adil
dc.contributor.authorÜnlü, M. Selim
dc.contributor.buuauthorOSMAN, BİLGEN
dc.contributor.buuauthorBakhshpour-Yücel, Monireh
dc.contributor.buuauthorAljayyousi, Nawal
dc.contributor.departmentFen Edebiyat Fakültesi
dc.contributor.departmentKimya Ana Bilim Dalı
dc.contributor.orcid0000-0002-5737-720X
dc.contributor.researcheridABF-4791-2020
dc.contributor.researcheridJPX-1609-2023
dc.date.accessioned2025-10-21T09:42:04Z
dc.date.issued2025-05-22
dc.description.abstractThis review explores the application of nanomaterial-based sensing systems for precisely detecting neuropharmaceutical compounds and neurotransmitters, delving into the connections between nanotechnology and neuropharmacology. Nanotechnology appears as a promising solution for many significant challenges posed by the complexities of the brain's biochemical nature. Using nanoscale materials, scientists have created novel sensors with high selectivity, sensitivity, and adaptability. Developing neuropharmaceutical compounds and monitoring their side effects on our neurological system raised the need for these nanomaterial-based sensors. In this review, we demonstrate the effectiveness of these technologies in real-time neuroactive compound detection and monitoring by illuminating the underlying principles through an examination of significant studies and recent developments. This review also highlights collaborative efforts at the intersection of nanotechnology and neuropharmacology and their direct and indirect effects on the understanding and controlling several neurological disorders. This review covers both sensors under research and those already applied in vivo or clinical monitoring of drug side effects.
dc.description.sponsorshipNational Science Foundation (NSF) 2329817
dc.identifier.doi10.3390/s25113256
dc.identifier.issue11
dc.identifier.scopus2-s2.0-105007693511
dc.identifier.urihttps://doi.org/10.3390/s25113256
dc.identifier.urihttps://hdl.handle.net/11452/56147
dc.identifier.volume25
dc.identifier.wos001506171500001
dc.indexed.wosWOS.SCI
dc.language.isoen
dc.publisherMdpi
dc.relation.journalSensors
dc.subjectGlassy-carbon electrode
dc.subjectSensıtıve voltammetrıc determınatıon
dc.subjectReduced graphene oxıde
dc.subjectScıence-and-technology
dc.subjectUrıc-acıd
dc.subjectPaste electrode
dc.subjectAscorbıc-acıd
dc.subjectElectrochemıcal determınatıon
dc.subjectPharmaceutıcal formulatıons
dc.subjectMolecular recognıtıon
dc.subjectAnomaterial
dc.subjectSensor systems
dc.subjectNeuropharmaceutical
dc.subjectNeurotransmitters
dc.subjectScience & Technology
dc.subjectPhysical Sciences
dc.subjectTechnology
dc.subjectChemistry, Analytical
dc.subjectEngineering, Electrical & Electronic
dc.subjectInstruments & Instrumentation
dc.subjectChemistry
dc.subjectEngineering
dc.titleNanomaterial-based sensing systems to detect neuropharmaceutical compounds and neurotransmitters
dc.typeReview
dspace.entity.typePublication
local.contributor.departmentFen Edebiyat Fakültesi/Kimya Ana Bilim Dalı
local.indexed.atWOS
local.indexed.atScopus
relation.isAuthorOfPublicationb696c48b-ee92-4822-be1f-c84f4fe0e3a6
relation.isAuthorOfPublication.latestForDiscoveryb696c48b-ee92-4822-be1f-c84f4fe0e3a6

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