Nanosurface Energy Transfer: Principles, Biosensing Applications, and Future Prospects

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초록

Nanosurface energy transfer (NSET) has emerged as a pivotal mechanism in nanobiophotonics, facilitating the development of highly sensitive biosensors with extended dynamic ranges. Unlike conventional F & ouml;rster resonance energy transfer, NSET exhibits an inverse fourth-power dependence on distance, enabling quantitative measurements over distances up to 40 nm. This review comprehensively explores the fundamental principles governing NSET, with particular emphasis on non-radiative coupling between fluorescent donors and metallic nanostructures such as gold nanoparticles. Additionally, the applications of these probes are surveyed across various bioanalytical domains, including nucleic acid assays, immunoassays, real-time intracellular monitoring, and various biomolecule detection. Additionally, the evolving integration of NSET, plasmonics, and nanophotonic architectures is discussed, focusing on emerging trends and the trajectory for developing next-generation, multiplexed, and point-of-care diagnostic platforms. Current challenges and prospective pathways for translating these advanced sensing systems into clinical and field-deployable solutions are also considered.

키워드

gold nanoparticlesNSETFRETfluorescence sensorsGOLD NANOPARTICLESQUANTUM DOTSACRIDINE-ORANGECARBON DOTSSURFACESIZENSETWATERFRETDYE
제목
Nanosurface Energy Transfer: Principles, Biosensing Applications, and Future Prospects
저자
Sharma, Arumugam SelvaLee, Nae Yoon
DOI
10.3390/chemosensors14010011
발행일
2026-01
유형
Review
저널명
CHEMOSENSORS
14
1