Rational construction of porous cobalt nanoparticle integrated nitrogen doped hollow carbon nanostructures for peptide agonist exendin-4 biosensing

dc.contributor.authorZhang, Wei
dc.contributor.authorNatarajan, Bharathi
dc.contributor.authorKannan, Palanisamy
dc.contributor.authorMedlín, Rostislav
dc.contributor.authorNicolai, Laurent Christophe
dc.contributor.authorProcházka, Michal
dc.contributor.authorMinár, Jan
dc.contributor.authorSubramanian, Palaniappan
dc.date.accessioned2025-06-27T10:09:40Z
dc.date.available2025-06-27T10:09:40Z
dc.date.issued2025
dc.date.updated2025-06-27T10:09:40Z
dc.description.abstractIn this study, we designed a point-of-care (POC) testing electrochemical biosensor using an integrated biosensing assay based on hollow-like nitrogen-doped carbon nanostructures combined with cobalt nanoparticles (Co@HNCNs, Co3O4@HNCNs, and CoP@HNCNs). These are functionalized with Anti-Exendin-4 Antibodies (Anti-Ex-4-Abs) and Bovine Serum Albumin (BSA) to create sensitive probes (Co@HNCNs/Anti-Ex-4-Abs/BSA, Co3O4@HNCNs/Anti-Ex-4-Abs/BSA, and CoP@HNCNs/Anti-Ex-4-Abs/BSA) for the ultrasensitive detection of exendin-4 (Ex-4), a peptide agonist used in the treatment of type 2 diabetes mellitus (T2DM). Among the cobalt-based carbon nanostructures, the Co3O4@HNCNs/Anti-Ex-4-Abs/BSA nanoprobe demonstrated superior ability to specifically recognize Ex-4. This was indicated by a significant decrease in the chronoamperometric (CA) i-t current response, facilitating low-level detection of Ex-4. The nanoprobe was capable of detecting Ex-4 concentrations ranging from 1.0 to 90.0 pM, with a sensitivity of 0.60 μA/pM and a limit of detection (LOD) of 0.46 pM (S/N = 3). Furthermore, the Co3O4@HNCNs/Anti-Ex-4-Abs/BSA nanoprobes demonstrated the ability to detect nanomolar levels of Ex-4 in blood serum and urine samples, achieving satisfactory recovery rates of 96–104%. The proposed electrostatic interaction chemistry approach establishes a remarkable platform for constructing a peptide agonist biosensor that is effective for detecting Ex-4 in real human serum and urine samples.en
dc.format11
dc.identifier.document-number001361685100001
dc.identifier.doi10.1016/j.bios.2024.116938
dc.identifier.issn0956-5663
dc.identifier.obd43945604
dc.identifier.orcidMedlín, Rostislav 0000-0003-4056-4022
dc.identifier.orcidNicolai, Laurent Christophe 0000-0002-7731-2673
dc.identifier.orcidProcházka, Michal 0000-0003-3364-7006
dc.identifier.orcidMinár, Jan 0000-0001-9735-8479
dc.identifier.orcidSubramanian, Palaniappan 0000-0003-1000-6994
dc.identifier.urihttp://hdl.handle.net/11025/61893
dc.language.isoen
dc.project.IDEH22_008/0004572
dc.relation.ispartofseriesBiosensors & Bioelectronics
dc.rights.accessA
dc.subjecthollow carbon nanostructuresen
dc.subjectnitrogen dopingen
dc.subjectcobalt nanoparticlesen
dc.subjectexendin-4en
dc.subjectbiosensoren
dc.subjectreal samplesen
dc.subjectclinical analysisen
dc.titleRational construction of porous cobalt nanoparticle integrated nitrogen doped hollow carbon nanostructures for peptide agonist exendin-4 biosensingen
dc.typeČlánek v databázi WoS (Jimp)
dc.typeČLÁNEK
dc.type.statusPublished Version
local.files.count1*
local.files.size9133920*
local.has.filesyes*
local.identifier.eid2-s2.0-85209259877

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