Caixeiro Soraya, Dörrenhaus Robert, Popczyk Anna, Schubert Marcel, Kath-Schorr Stephanie, Gather Malte C
Department of Chemistry and Biochemistry, Humboldt Centre for Nano- and Biophotonics, Institute for Light and Matter, Greinstrasse 4-6, 50939 Cologne, Germany.
Centre for Photonics and Photonic Materials, Department of Physics, University of Bath, Bath BA2 7AY, United Kingdom.
Nano Lett. 2025 Mar 19;25(11):4467-4475. doi: 10.1021/acs.nanolett.5c00078. Epub 2025 Mar 4.
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 the 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 exclusively labeling the sensing strand or a hairpin strand eliminates the need for secondary labeling 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 controlled release mechanism for 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.
核酸传感对于推进诊断、治疗监测和分子生物学研究至关重要,因为它能够精确识别DNA和RNA的相互作用。在此,我们展示了一种基于DNA功能化回音壁模式(WGM)微激光器的创新传感平台。通过将激光发射的光谱位移与折射率变化相关联,我们证明了可实时检测DNA杂交和结构变化。向DNA链中添加金纳米颗粒可显著提高灵敏度,并且仅标记传感链或发夹链就无需对目标链进行二次标记。我们进一步表明离子强度会影响DNA的紧密程度,并且我们引入了一种基于发夹的系统作为用于药物递送的两用传感器和控释机制。这种多功能的基于WGM的平台在序列特异性核酸传感、多重检测以及诊断和细胞研究的体内应用方面具有前景。