The overexpression and/or amplification of the HER2/neu oncogene has been proposed as a prognostic marker in breast cancer. The detection of the related peptide HER2 remains a grand challenge in cancer diagnosis and for therapeutic decision-making. Here, we used a biosensing device based on Bloch Surface Waves excited on a one-dimensional photonic crystal (1DPC) as valid alternative to standard techniques. The 1DPC was optimized to operate in the visible spectrum and the biosensor optics has been designed to combine label-free and fluorescence operation modes. This feature enables a real-time monitoring of a direct competitive assay using detection mAbs conjugated with quantum dots for an accurate discrimination in fluorescence mode between HER2-positive/negative human plasma samples. Such a competitive assay was implemented using patterned alternating areas where HER2-Fc chimera and reference molecules were bio-conjugated and monitored in a multiplexed way. By combining Label-Free and fluorescence detection analysis, we were able to tune the parameters of the assay and provide an HER2 detection in human plasma in less than 20 min, allowing for a cost-effective assay and rapid turnaround time. The proposed approach offers a promising technique capable of performing combined label-free and fluorescence detection for both diagnosis and therapeutic monitoring of diseases.

Direct competitive assay for HER2 detection in human plasma using Bloch surface wave-based biosensors / Pileri, Tommaso; Sinibaldi, Alberto; Occhicone, Agostino; Danz, Norbert; Giordani, Elena; Allegretti, Matteo; Sonntag, Frank; Munzert, Peter; Giacomini, Patrizio; Michelotti, Francesco. - In: ANALYTICAL BIOCHEMISTRY. - ISSN 0003-2697. - 684:(2023), p. 115374. [10.1016/j.ab.2023.115374]

Direct competitive assay for HER2 detection in human plasma using Bloch surface wave-based biosensors

Pileri, Tommaso;Sinibaldi, Alberto
;
Occhicone, Agostino;Danz, Norbert;Michelotti, Francesco
2023

Abstract

The overexpression and/or amplification of the HER2/neu oncogene has been proposed as a prognostic marker in breast cancer. The detection of the related peptide HER2 remains a grand challenge in cancer diagnosis and for therapeutic decision-making. Here, we used a biosensing device based on Bloch Surface Waves excited on a one-dimensional photonic crystal (1DPC) as valid alternative to standard techniques. The 1DPC was optimized to operate in the visible spectrum and the biosensor optics has been designed to combine label-free and fluorescence operation modes. This feature enables a real-time monitoring of a direct competitive assay using detection mAbs conjugated with quantum dots for an accurate discrimination in fluorescence mode between HER2-positive/negative human plasma samples. Such a competitive assay was implemented using patterned alternating areas where HER2-Fc chimera and reference molecules were bio-conjugated and monitored in a multiplexed way. By combining Label-Free and fluorescence detection analysis, we were able to tune the parameters of the assay and provide an HER2 detection in human plasma in less than 20 min, allowing for a cost-effective assay and rapid turnaround time. The proposed approach offers a promising technique capable of performing combined label-free and fluorescence detection for both diagnosis and therapeutic monitoring of diseases.
2023
Biomarker; Biosensors; Bloch surface waves; HER2; Photonic crystals
01 Pubblicazione su rivista::01a Articolo in rivista
Direct competitive assay for HER2 detection in human plasma using Bloch surface wave-based biosensors / Pileri, Tommaso; Sinibaldi, Alberto; Occhicone, Agostino; Danz, Norbert; Giordani, Elena; Allegretti, Matteo; Sonntag, Frank; Munzert, Peter; Giacomini, Patrizio; Michelotti, Francesco. - In: ANALYTICAL BIOCHEMISTRY. - ISSN 0003-2697. - 684:(2023), p. 115374. [10.1016/j.ab.2023.115374]
File allegati a questo prodotto
Non ci sono file associati a questo prodotto.

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1694207
 Attenzione

Attenzione! I dati visualizzati non sono stati sottoposti a validazione da parte dell'ateneo

Citazioni
  • ???jsp.display-item.citation.pmc??? 0
  • Scopus 0
  • ???jsp.display-item.citation.isi??? ND
social impact