Publication:
SPECTRA-based detection of drug-induced hepatotoxicity through extracellular vesicle analysis

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KU-Authors

Aygün, Uğur

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Parlatan, Ugur
Boudreau, Luke
Torun, Hulya
Fan, Letao
Gokaltun, Ayse Aslihan
Akin, Demir
Usta, O. Berk
Demirci, Utkan

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Language

eng

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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.

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Elsevier

Subject

Chemistry, Electrochemistry, Instruments and instrumentation

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Sensors and Actuators B-chemical

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DOI

10.1016/j.snb.2026.139520

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