Yang Bin, Wang Haonan, Kong Jilie, Fang Xueen
Department of Chemistry and Institutes of Biomedical Sciences, Fudan University, Shanghai, 200433, PR China.
Nat Commun. 2024 Mar 2;15(1):1936. doi: 10.1038/s41467-024-46215-w.
Real-time and continuous monitoring of nucleic acid biomarkers with wearable devices holds potential for personal health management, especially in the context of pandemic surveillance or intensive care unit disease. However, achieving high sensitivity and long-term stability remains challenging. Here, we report a tetrahedral nanostructure-based Natronobacterium gregoryi Argonaute (NgAgo) for long-term stable monitoring of ultratrace unamplified nucleic acids (cell-free DNAs and RNAs) in vivo for sepsis on wearable device. This integrated wireless wearable consists of a flexible circuit board, a microneedle biosensor, and a stretchable epidermis patch with enrichment capability. We comprehensively investigate the recognition mechanism of nucleic acids by NgAgo/guide DNA and signal transformation within the Debye distance. In vivo experiments demonstrate the suitability for real-time monitoring of cell-free DNA and RNA with a sensitivity of 0.3 fM up to 14 days. These results provide a strategy for highly sensitive molecular recognition in vivo and for on-body detection of nucleic acid.
利用可穿戴设备对核酸生物标志物进行实时连续监测在个人健康管理方面具有潜力,尤其是在大流行监测或重症监护病房疾病的背景下。然而,实现高灵敏度和长期稳定性仍然具有挑战性。在此,我们报道了一种基于四面体纳米结构的嗜盐碱古菌Argonaute(NgAgo),用于在可穿戴设备上对脓毒症体内的超痕量未扩增核酸(游离DNA和RNA)进行长期稳定监测。这种集成的无线可穿戴设备由柔性电路板、微针生物传感器和具有富集能力的可拉伸表皮贴片组成。我们全面研究了NgAgo/引导DNA对核酸的识别机制以及德拜距离内的信号转换。体内实验证明了其适用于实时监测游离DNA和RNA,灵敏度可达0.3 fM,持续时间长达14天。这些结果为体内高灵敏度分子识别和核酸的体表检测提供了一种策略。