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Au-decorated Ti3C2Tx/porous carbon immunoplatform for ECM1 breast cancer biomarker detection with machine learning computation for predictive accuracy.
Tumrani, Sadam Hussain; Soomro, Razium Ali; Thabet, Hamdy Khamees; Karakus, Selcan; El-Bahy, Zeinhom M; Küçükdeniz, Tarik; Khoso, Salim.
Afiliación
  • Tumrani SH; Key Laboratory of Water Environment Simulation, School of Environment, Beijing Normal University, Beijing, 100875, PR China; The Key Laboratory of Water and Sediment Sciences, Ministry of Education, School of Environment, Beijing Normal University, Beijing, 100875, PR China.
  • Soomro RA; State Key Laboratory of Organic-Inorganic Composites, Beijing Key Laboratory of Electrochemical Process and Technology for Materials, Beijing University of Chemical Technology, Beijing, 100029, PR China.
  • Thabet HK; Department of Chemistry, College of Sciences and Arts , Northern Border University, Rafha, 91911, Saudi Arabia.
  • Karakus S; Department of Chemistry, Faculty of Engineering, Istanbul University-Cerrahpasa, Istanbul, 34320, Turkey; Health Biotechnology Center for Excellence Joint Practice and Research (SABIOTEK), Istanbul University-Cerrahpasa, Istanbul, Türkiye. Electronic address: selcan@iuc.edu.tr.
  • El-Bahy ZM; Department of Chemistry, Faculty of Science, Al-Azhar University, Nasr City, 11884, Cairo, Egypt. Electronic address: zeinelbahy@azhar.edu.eg.
  • Küçükdeniz T; Department of Industrial Engineering, Faculty of Engineering, Istanbul University-Cerrahpasa, Istanbul, 34320, Turkey.
  • Khoso S; Department of Civil Engineering, The University of Toledo, 2801 Bancroft St, Toledo, OH, 43606, USA.
Talanta ; 278: 126507, 2024 Oct 01.
Article en En | MEDLINE | ID: mdl-38968654
ABSTRACT
Electrochemical immunosensors, surpassing conventional diagnostics, exhibit significant potential for cancer biomarker detection. However, achieving a delicate balance between signal sensitivity and operational stability, especially at the heterostructure interface, is crucial for practical immunosensors. Herein, porous carbon (PC) integration with Ti3C2Tx-MXene (MX) and gold nanoparticles (Au NPs) constructs a versatile immunosensing platform for detecting extracellular matrix protein-1 (ECM1), a breast cancer-associated biomarker. The inclusion of PC provided robust structural support, enhancing electrolytic diffusion with an expansive surface area while synergistically facilitating charge transfer with Ti3C2Tx. The biosensor optimized with 1.0 mg PC demonstrates a robust electrochemical redox response to the surface-bound thionine (th) redox probe, utilizing an inhibition-based strategy for ECM1 detection. The robust antibody-antigen interactions across the PC-integrated Ti3C2Tx-Au NPs platform (MX-Au-C-1) enabled robust ECM1 detection within 0.1-7.5 nM, with a low limit of detection (LOD) of 0.012 nM. The constructed biosensor shows improved operational stability with a 98.6 % current retention over 1 h, surpassing MXene-integrated (MX-Au) and pristine Au NPs (63.2 % and 44.3 %, respectively) electrodes. Moreover, the successful adaptation of the artificial neural network (ANN) model for predictive analysis of the generated DPV data further validates the accuracy of the biosensor, promising its future application in AI-powered remote health monitoring.
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Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Titanio / Neoplasias de la Mama / Carbono / Técnicas Biosensibles / Biomarcadores de Tumor / Nanopartículas del Metal / Aprendizaje Automático / Oro Límite: Female / Humans Idioma: En Revista: Talanta Año: 2024 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Titanio / Neoplasias de la Mama / Carbono / Técnicas Biosensibles / Biomarcadores de Tumor / Nanopartículas del Metal / Aprendizaje Automático / Oro Límite: Female / Humans Idioma: En Revista: Talanta Año: 2024 Tipo del documento: Article