Intelligent Near-Infrared Light-Activatable DNA Machine with DNA Wire Nano-Scaffold-Integrated Fast Domino-Like Driving Amplification for High-Performance Imaging in Live Biological Samples

生物传感器 多米诺骨牌 材料科学 荧光 劈开 纳米技术 DNA 检出限 级联 光电子学 计算机科学 化学 光学 物理 生物化学 催化作用 色谱法
作者
Tiantian Zhang,Xiaoming Sun,Xiaoxue Chen,Weilin Chen,Hong‐Wu Tang,Chengyu Li
出处
期刊:Biosensors and Bioelectronics [Elsevier BV]
卷期号:259: 116412-116412 被引量:3
标识
DOI:10.1016/j.bios.2024.116412
摘要

While there is significant potential for DNA machine-built enzyme-free fluorescence biosensors in the imaging analysis of live biological samples, they persist certain shortcomings. These encompass a deficiency of signal enrichment within a singular interface, uncontrolled premature activation during bio-delivery, and a slow reaction rate due to free nucleic acid collisions. In this contribution, we are committed to resolving the above challenges. Firstly, a single-interface-integrated domino-like driving amplification is constructed. In this conception, a specific target acts as the domino promotor (namely the energy source), initiating a cascading chain reaction that grafts onto a singular interface. Next, an 808 nm near-infrared (NIR) light-excited up-converting luminescence-induced light-activatable biosensing technique is introduced. By locking the target-specific identification segment with a photo-cleavage connector, the up-converted ultraviolet emission can activate target binding in a completely controlled manner. Moreover, a fast reaction rate is achieved by confining nucleic acid collisions within the surface of a DNA wire nano-scaffold, leading to a substantial enhancement in local contact concentration (30.8-fold increase, alongside a 15 times elevation in rate). When a non-coding microRNA (miRNA-221) is positioned as the model low-abundance target for proof-of-concept validation, our intelligent DNA machine demonstrates ultra-high sensitivity (with a limit of detection down to 62.65 fM) and good specificity for this hepatic malignant tumor-associated biomarker in solution detection. Going further, it is worth highlighting that the biosensing system can be employed to carry out high-performance imaging analysis in live bio-samples (ranging from the cellular level to the nude mouse body), thereby propelling the field of DNA machines in disease diagnosis.

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