Publication: SPECTRA-based detection of drug-induced hepatotoxicity through extracellular vesicle analysis
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KU-Authors
Aygün, Uğur
Organization Authors
Co-Authors
Parlatan, Ugur
Boudreau, Luke
Torun, Hulya
Fan, Letao
Gokaltun, Ayse Aslihan
Akin, Demir
Usta, O. Berk
Demirci, Utkan
Date
Language
eng
Type
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No
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Abstract
Extracellular vesicles (EV) are becoming crucial targets in liquid biopsy, diagnostics, and therapeutic applications, yet their nanoscale characterization remains challenging. In this context, the detection of drug-induced liver injury, i.e., hepatotoxicity, through EV molecular content remains unexplored. To this end, we present the SPECTRA - Surface Plasmonic Enhancement with Combined Transformative RAman and Interferometric Microscopy approach, which provides rapid, label-free EV content analysis under 30 min and requires only 1.3 microliters of EV sample. Using hepatic cultures as a model, our platform captures distinct and reproducible EV molecular changes in response to acetaminophen-induced hepatotoxicity. Across independent culture sets, a Gaussian Process Regression model predicted Acetaminophen (APAP) dose with median absolute error of 1.50 mM and minimal bias (Bland-Altman bias similar to 0.03 mM); cross-validated RMSE was 3.145 mM. These findings establish EVs as dynamic reporters of cellular drug responses and demonstrate use of SPECTRA for EV detection of hepatotoxicity.
Source
Publisher
Elsevier
Subject
Citation
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Source
Sensors and Actuators B-chemical
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DOI
10.1016/j.snb.2026.139520
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N/A
