Cite this article:
Yufang Chen, Wenbo Zhao, Jinxing Xiong, Jiashu Zhang, Kai Zhang, Jiale Xie, Menghan Liu, Hongdan Wan. Highly sensitive, ultra-low detection limit 3-D DNA nanostructure biosensor based on functionalized reflective optical fiber probeJ. Chin. Phys. B, 2026, 35(5): 054207.
| Yufang Chen, Wenbo Zhao, Jinxing Xiong, Jiashu Zhang, Kai Zhang, Jiale Xie, Menghan Liu, Hongdan Wan. Highly sensitive, ultra-low detection limit 3-D DNA nanostructure biosensor based on functionalized reflective optical fiber probeJ. Chin. Phys. B, 2026, 35(5): 054207. |
Highly sensitive, ultra-low detection limit 3-D DNA nanostructure biosensor based on functionalized reflective optical fiber probe
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Abstract
A highly sensitive, ultra-low detection limit 3-D DNA nanostructure biosensor based on functionalized reflective optical fiber probe (ROFP) is proposed and demonstrated. Our approach achieves a mass limit of detection of ∼ 10 aM based on the ROFP. A particular single-nucleotide mismatch sequence is also identified. The sensitivity of the proposed DNA biosensor is 1.51 nm/lgaM, about three-fold higher than using single-strand DNA probes (0.47 nm/lgaM) and with high specificity. The proposed ROFP has high compactness (with a length of ∼ 3 mm) which is convenient for sample detection with small volume and complex gradients in small spaces with high sensitivity. -
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