An Internal-Standard-Integrated Digital SERS Immunoassay for Accurate and Precise Trace-Level Cytokine Quantification in Plasma

Abstract Accurate and precise quantification of trace-level cytokines in complex biological matrices remains challenging, limiting their use as longitudinal biomarkers in clinical studies. Here, we present a nanotechnology-enabled surface-enhanced Raman scattering (SERS) platform incorporating an internal standard (IS) for digital, attomolar-level multiplex cytokine quantification. This platform enables precise digital trace-level detection of IL-1β, IL-6, IL-12, and TNF-α. Using an orthogonal recombinant protein IS to correct assay- and SERS-related variability, this platform addresses key barriers to reliable trace-protein measurements and broader clinical adoption. Incorporation of the IS reduced the inter-replicate coefficient of variation from ∼40–60% to 2–3%, and improved accuracy to ∼95–105%, enabling robust cytokine quantification in human plasma. Compared with a widely used clinical electrochemiluminescence (ECL) assay, our internal-standard-integrated chip enables accurate and precise quantification while maintaining multiplex capability, consistently detecting cytokine levels near or below ECL-defined quantification limits. As a proof-of-concept application, we evaluated the platform using plasma samples from individuals with MDD, a clinically relevant context in which aberrant immune activation and low-level inflammation have been implicated. These measurements support the analytical robustness of the internal-standard-integrated digital SERS immunoassay and its potential utility for future longitudinal cytokine monitoring studies in complex samples.

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Publication Details

Journal
Analytical Chemistry
Published
2026-09-29
DOI
https://doi.org/10.1021/acs.analchem.6c03298
Primary Topic
Gold and Silver Nanoparticles Synthesis and Applications
Type
article
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An Internal-Standard-Integrated Digital SERS Immunoassay for Accurate and Precise Trace-Level Cytokine Quantification in Plasma

Anjali K. Henders, Alain Wuethrich, Fahimeh Farokhinejad, Mirim Shin et al.
Analytical Chemistry
Gold and Silver Nanoparticles Synthesis and Applications
article

An Internal-Standard-Integrated Digital SERS Immunoassay for Accurate and Precise Trace-Level Cytokine Quantification in Plasma

Anjali K. Henders, Alain Wuethrich, Fahimeh Farokhinejad, Mirim Shin, Fiach Antaw, Matt Trau, Leanne M. Wallace, Naomi R. Wray, Ian Bernard Hickie, Richard J. Lobb, Jacob J. Crouse, Yiwen Zhang
article en

Abstract

Abstract Accurate and precise quantification of trace-level cytokines in complex biological matrices remains challenging, limiting their use as longitudinal biomarkers in clinical studies. Here, we present a nanotechnology-enabled surface-enhanced Raman scattering (SERS) platform incorporating an internal standard (IS) for digital, attomolar-level multiplex cytokine quantification. This platform enables precise digital trace-level detection of IL-1β, IL-6, IL-12, and TNF-α. Using an orthogonal recombinant protein IS to correct assay- and SERS-related variability, this platform addresses key barriers to reliable trace-protein measurements and broader clinical adoption. Incorporation of the IS reduced the inter-replicate coefficient of variation from ∼40–60% to 2–3%, and improved accuracy to ∼95–105%, enabling robust cytokine quantification in human plasma. Compared with a widely used clinical electrochemiluminescence (ECL) assay, our internal-standard-integrated chip enables accurate and precise quantification while maintaining multiplex capability, consistently detecting cytokine levels near or below ECL-defined quantification limits. As a proof-of-concept application, we evaluated the platform using plasma samples from individuals with MDD, a clinically relevant context in which aberrant immune activation and low-level inflammation have been implicated. These measurements support the analytical robustness of the internal-standard-integrated digital SERS immunoassay and its potential utility for future longitudinal cytokine monitoring studies in complex samples.

Analytical Chemistry
The University of Sydney (AU), The University of Queensland (AU), University of Oxford (GB)
Openalex Percentile: Top 30%
Gold and Silver Nanoparticles Synthesis and Applications
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