2025/12/21

Mahmoud Roushani

Academic rank: Professor
ORCID:
Education: PhD.
H-Index:
Faculty: Basic Science
ScholarId:
E-mail: m.roushani [at] ilam.ac.ir
ScopusId:
Phone:
ResearchGate:

Research

Title
Development and investigation of a novel nanohybrid probe based on double recognition of Apt-MIP grafted on AuNPs@nano-C60 nanocomposite for TNT detection
Type
Presentation
Keywords
TNT
Year
2017
Researchers Mahmoud Roushani ، F. Shahdostfard

Abstract

ThisstudyintroducesanovelsyntheticreceptorsensorbasedonthecombinationofaptasensingandmolecularimprintingstrategiesfordesigningaighlysensitivesystemtoovercomesomeofthechallengedfacedbyconventionalmethodsinTNTsensing.Anamino-AptwithinherenttendencyforTNTwascomplexwithTNTmoleculepriortobeingcovalentattachmentontoaGCEsurfacewhichismodifiedwithanovelandacilenanocomposite(Au@nano-C60).Controlledelectropolimerysationofdopamine(DA)aroundtheApt[TNT]complexservedtobothentrapthecomplexandholdingtheApt,it’sbindingconformation,andtolocalisetheTNTbindingsitesatthesensorsurface.ByremovingofTNT,itisassumedthattheMIPcavitywouldactsynergisticallywiththeembeddedApttoformananohybridreceptor(Apt-MIP),indicatingrecognitionpropertiessuperiortothatofAptalone.BenefitingfromthedoublespecificmolecularrecognitionpropertyofMIPsandAptsalongwiththeinsitugenerationofAunanoparticlesontothesuraceoftheGCEmodifiedwithactivatedC60astheAu@nano-C60nanocompositeledtounbeatablesensingpropertiessuchaslowerLOD(3.33aM)andwiderlinearconcentrationrangeofTNT(0.01fMto1.5μM)incomparisontoanotherreportedmethodsintheliterature.ThesatisfactoryresultsindicatethattheproposedstrategycouldbeextendedtovariousdiagnosticallyreleventproteinsusingnotonlyAptsbutasootheraffinitymoleculessuchasaffimers,antibodyandpeptidefragments.