Literature DB >> 29465232

Exciton-Plasmon Interaction between AuNPs/Graphene Nanohybrids and CdS Quantum Dots/TiO2 for Photoelectrochemical Aptasensing of Prostate-Specific Antigen.

Guoneng Cai1, Zhengzhong Yu1, Rongrong Ren1, Dianping Tang1.   

Abstract

A competitive-displacement reaction strategy based on target-induced dissociation of gold nanoparticle coated graphene nanosheet (AuNPs/GN) from CdS quantum dot functionalized mesoporous titanium dioxide (CdS QDs/TiO2) was designed for the sensitive photoelectrochemical (PEC) aptasensing of prostate-specific antigen (PSA) through the exciton-plasmon interaction (EPI) between CdS QDs and AuNPs. To construct such an aptasensing system, capture DNA was initially conjugated covalently onto CdS QDs/TiO2-modified electrode, and then AuNPs/GN-labeled PSA aptamer was bound onto biofunctionalized CdS QDs/TiO2 via hybridization chain reaction of partial bases with capture DNA. Introduction of AuNPs/GN efficiently quenched the photocurrent of CdS QDs/TiO2 thanks to energy transfer. Upon addition of target PSA, the sandwiched aptamer between CdS QDs/TiO2 and AuNPs/GN reacted with the analyte analyte, thus resulting in the dissociation of AuNPs/GN from the CdS QDs/TiO2 to increase the photocurrent. Under optimum conditions, the aptasensing platform exhibited a high sensitivity for PSA detection within a dynamic linear range of 1.0 pg/mL to 8.0 ng/mL at a low limitat of detection of 0.52 pg/mL. The interparticle distance of exciton-plasmon interaction and contents of AuNPs corresponding to EPI effect in this system were also studied. Good selectivity and high reproducibility were obtained for the analysis of target PSA. Importantly, the accuracy and matrix effect of PEC aptasensor was evaluated for the determination of human serum specimens and newborn calf serum-diluted PSA standards, giving a well-matched result with the referenced PSA ELISA kit.

Entities:  

Keywords:  CdS quantum dot coated mesoporous TiO2; competitive-displacement reaction; exciton−plasmon interaction; nanogold-functionalized graphene nanosheets; photoelectrochemical aptasensor

Mesh:

Substances:

Year:  2018        PMID: 29465232     DOI: 10.1021/acssensors.7b00899

Source DB:  PubMed          Journal:  ACS Sens        ISSN: 2379-3694            Impact factor:   7.711


  15 in total

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Journal:  Sci Rep       Date:  2018-05-29       Impact factor: 4.379

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Journal:  Sci Rep       Date:  2018-11-05       Impact factor: 4.379

5.  A dual-model SERS and RRS analytical platform for Pb(II) based on Ag-doped carbon dot catalytic amplification and aptamer regulation.

Authors:  Haidong Wang; Xiaowei Huang; Guiqing Wen; Zhiliang Jiang
Journal:  Sci Rep       Date:  2019-07-10       Impact factor: 4.379

6.  Exonuclease III-Regulated Target Cyclic Amplification-Based Single Nucleotide Polymorphism Detection Using Ultrathin Ternary Chalcogenide Nanosheets.

Authors:  Yanling Hu; Chaoliang Tan; Xin Lin; Zhuangchai Lai; Xiao Zhang; Qipeng Lu; Ning Feng; Dongliang Yang; Lixing Weng
Journal:  Front Chem       Date:  2019-12-06       Impact factor: 5.221

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Authors:  Rabina Bhujel; Sadhna Rai; Khanindram Baruah; Utpal Deka; Joydeep Biswas; Bibhu P Swain
Journal:  Sci Rep       Date:  2019-12-23       Impact factor: 4.379

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Authors:  Zhuo Yang; Wei Xu; Bingdong Yan; Baiqiang Wu; Jinxin Ma; Xiaohong Wang; Bin Qiao; Jinchun Tu; Hua Pei; Delun Chen; Qiang Wu
Journal:  ACS Omega       Date:  2022-01-06

Review 9.  Techniques for Detection of Clinical Used Heparins.

Authors:  Binjie Li; Huimin Zhao; Mingjia Yu
Journal:  Int J Anal Chem       Date:  2021-05-06       Impact factor: 1.885

10.  Coordination-induced exfoliation to monolayer Bi-anchored MnB2 nanosheets for multimodal imaging-guided photothermal therapy of cancer.

Authors:  Zhaokui Jin; Danyang Chen; Penghe Zhao; Yanyuan Wen; Mingjian Fan; Gaoxin Zhou; Yingshuai Wang; Qianjun He
Journal:  Theranostics       Date:  2020-01-01       Impact factor: 11.556

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