Dataset for "DNA Sensing with Whispering Gallery Mode Microlaser"
Nucleic acid sensing is crucial for advancing diagnostics, therapeutic monitoring and molecular biology research, by enabling the precise identification of DNA and RNA interactions. Here, we present an innovative sensing platform based on DNA-functionalized whispering gallery mode (WGM) microlasers. By correlating spectral shifts in laser emission to changes in refractive index, we demonstrate real-time detection of DNA hybridization and structural changes. The addition of gold nanoparticles to the DNA strands significantly enhances sensitivity, and labelling exclusively the sensing strand or a hairpin strand eliminates the need for secondary labelling of the target strand. We further show that ionic strength influences DNA compactness, and we introduce a hairpin-based system as a dual-purpose sensor and con-trolled release mechanism for potential drug delivery. This versatile WGM-based platform offers promise for sequence-specific nucleic acid sensing, multiplexed detection, and in vivo applications in diagnostics and cellular research.
This dataset includes the data from Figures 1-5 of the associated paper. It is organised into folders by figure number for easy navigation, with filenames indicating the corresponding figure and identifying letters (e.g., a, b, c, d). For details on how the data was collected refer to publication and its supplementary information.
Cite this dataset as:
Caixeiro, S.,
Dörrenhaus, R.,
Popczyk, A.,
Schubert, M.,
Kath-Schorr, S.,
Gather, M.,
2025.
Dataset for "DNA Sensing with Whispering Gallery Mode Microlaser".
Bath: University of Bath Research Data Archive.
Available from: https://doi.org/10.15125/BATH-01497.
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Data
WGM-DNA-dataset.zip
application/zip (20MB)
Creative Commons: Attribution 4.0
This zipped file contains processed data from figures 1-5 of the associated manuscript.
Creators
Soraya Caixeiro
University of Bath
Robert Dörrenhaus
University of Cologne
Anna Popczyk
University of Cologne
Marcel Schubert
University of Cologne
Stephanie Kath-Schorr
University of Cologne
Malte C. Gather
University of St Andrews; University of Cologne
Contributors
University of Bath
Contributor
University of St Andrews
Contributor
University of Cologne
Contributor
Documentation
Data collection method:
The methodology can be found in the associated paper.
Methodology link:
Caixeiro, S., Dörrenhaus, R., Popczyk, A., Schubert, M., Kath-Schorr, S., and Gather, M. C., 2025. DNA Sensing with Whispering Gallery Mode Microlasers. Version 1. arXiv. Available from: https://doi.org/10.48550/ARXIV.2502.13664.
Funders
Alexander von Humboldt Foundation
https://doi.org/10.13039/100005156
Alexander von Humboldt professorship to M.C.G
Publication details
Publication date: 4 March 2025
by: University of Bath
Version: 1
DOI: https://doi.org/10.15125/BATH-01497
URL for this record: https://researchdata.bath.ac.uk/1497
Related papers and books
Caixeiro, S., Dörrenhaus, R., Popczyk, A., Schubert, M., Kath-Schorr, S., and Gather, M. C., 2025. DNA Sensing with Whispering Gallery Mode Microlasers. Nano Letters. Available from: https://doi.org/10.1021/acs.nanolett.5c00078.
Contact information
Please contact the Research Data Service in the first instance for all matters concerning this item.
Contact person: Soraya Caixeiro
Faculty of Science
Physics
Research Centres & Institutes
Centre for Photonics and Photonic Materials