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What Does SERS Measure in Nucleic Acids? An Interface-Defined Perspective.

Created on 23 Sep 2026

Authors

Guangping Li, Muhammad Usman, Cheng Wang, Xinyue Wu, Yu Zhang, Honglin Liu

Published in

Small methods. Pages e71055. Sep 22, 2026. Epub Sep 22, 2026.

Abstract

Surface-enhanced Raman scattering (SERS) has emerged as a powerful platform for nucleic acids analyses due to its ultrahigh sensitivity and intrinsic molecular specificity. However, unlike small-molecule systems, SERS responses of nucleic acids remain highly variable and strongly dependent on experimental conditions, limiting structural interpretability and reproducibility. In this Review, we provide a unified perspective that reframes SERS of nucleic acids as an interface-defined physicochemical process rather than a direct molecular fingerprinting technique. We systematically analyze how interfacial accessibility, adsorption configuration, conformational reorganization, and electromagnetic (EM) selection collectively govern spectral formation through a hierarchical selection mechanism. On this basis, we propose that SERS spectra predominantly encode ensembles of interface-selected conformations, which generally diverge from intrinsic solution-phase structures, thereby explaining the widespread inconsistencies observed across different studies. This framework establishes a conceptual foundation for transforming SERS of nucleic acids from an empirical sensing approach into a controllable and predictive platform for structural analysis and biosensing applications.

PMID:
42773787
Bibliographic data and abstract were imported from PubMed on 23 Sep 2026.

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