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    Fiber-based label-free D-dimer detection for early diagnosis of venous thromboembolism

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    2021100478-Zubiate_FiberBased.pdf (453.8Kb)
    Date
    2020
    Author
    Zubiate Orzanco, Pablo Upna Orcid
    Urrutia Azcona, Aitor Upna Orcid
    Ruiz Zamarreño, Carlos Upna Orcid
    Fernández Irigoyen, Joaquín Upna Orcid
    Giannetti, Ambra 
    Baldini, Francesco 
    Díaz Lucas, Silvia Upna Orcid
    Matías Maestro, Ignacio Upna Orcid
    Arregui San Martín, Francisco Javier Upna Orcid
    Santamaría, Enrique 
    Del Villar, Ignacio Upna Orcid
    Chiavaioli, Francesco 
    Version
    Acceso abierto / Sarbide irekia
    Type
    Contribución a congreso / Biltzarrerako ekarpena
    Version
    Versión aceptada / Onetsi den bertsioa
    Impact
     
     
     
    10.1117/12.2555693
     
     
     
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    Abstract
    D-dimer is a useful diagnostic biomarker for deep vein thrombosis or pulmonary embolism, collectively referred to as venous thromboembolism (VTE). The ability to detect in real-time the amount of D-dimer with a fast and reliable method is a key step to anticipate the appearance of these diseases. The combination of fiber-optic-based platforms for biosensing with the nanotechnologies is opening up ... [++]
    D-dimer is a useful diagnostic biomarker for deep vein thrombosis or pulmonary embolism, collectively referred to as venous thromboembolism (VTE). The ability to detect in real-time the amount of D-dimer with a fast and reliable method is a key step to anticipate the appearance of these diseases. The combination of fiber-optic-based platforms for biosensing with the nanotechnologies is opening up the chance for the development of in situ, portable, lightweight, versatile, reliable and high-performance optical sensing devices towards lab-on-fiber technology. The generation of lossy mode resonances (LMRs) by means of the deposition of nm-thick absorbing metal-oxide films on special geometric-modified fibers allows measuring precisely and accurately surface refractive index changes, which are due to the binding interaction between a biological recognition element and the analyte under investigation. This approach enhances the light-matter interaction in a strong way, thus turning out to be more sensitive compared to other optical technology platforms, such as fiber gratings or surface plasmon resonance. Here, the results of a highly specific and sensitive biosensor for the detection of D-dimer based on LMR in fiber-optics are presented by monitoring in real-time the shift of the LMR related to the biomolecule interactions thanks to a conventional wavelength-interrogation system and an ad-hoc developed microfluidics. A detection limit of 100 ng/mL, a value 5-fold below the clinical cutoff value, has been attained for D-dimer spiked in human serum. The comparison of the results achieved with proteomics-based methodologies, which allows for the identification of betaand gamma-chains of fibrinogen, demonstrates the ability of our platform to specifically (>90%) recognize D-dimer. [--]
    Subject
    Venous thromboembolism, D-dimer, Label-free, Optical fiber biosensor, Lossy mode resonance
     
    Publisher
    SPIE
    Published in
    Optical Sensing and Detection VI, 113540S (1 April 2020)
    Departament
    Universidad Pública de Navarra/Nafarroako Unibertsitate Publikoa. Institute of Smart Cities - ISC / Universidad Pública de Navarra. Departamento de Ingeniería Eléctrica, Electrónica y de Comunicación / Nafarroako Unibertsitate Publikoa. Ingeniaritza Elektrikoa, Elektronikoa eta Telekomunikazio Ingeniaritza Saila
     
    Publisher version
    https://doi.org/10.1117/12.2555693
    URI
    https://hdl.handle.net/2454/42093
    Appears in Collections
    • Comunicaciones y ponencias de congresos - Biltzarrak eta Argitalpenak [680]
    • Comunicaciones y ponencias de congresos ISC - ISC biltzarretako komunikazioak eta txostenak [164]
    • Comunicaciones y ponencias de congresos DIEC - IEKS Biltzarretako komunikazioak eta txostenak [136]
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