Affinity-Modulated Molecular Beacons on MoS<sub>2</sub> Nanosheets for MicroRNA Detection

Mingshu Xiao, Arun Richard Chandrasekaran, Wei Ji, Fan Li, Tiantian Man, Changfeng Zhu, Xizhong Shen, Hao Pei, Qian Li, Li Li

ACS Applied Materials & Interfaces · 2018 · 100 citations · 35 references

Abstract

DNA-functionalized layered two-dimensional transition-metal dichalcogenides have attracted tremendous interest for constructing biosensors in recent years. In this work, we report diblock molecular beacons with poly-cytosine (polyC) tails anchored on molybdenum disulfide (MoS<sub>2</sub>) nanosheets as probes for microRNA detection. The polyC block is adsorbed on MoS<sub>2</sub> and the molecular beacon block is available for hybridization to the target; duplex-specific nuclease provides signal amplification by target recycling. By changing the length of polyC, we regulate the density of probes on MoS<sub>2</sub> and inhibit the adsorption of enzyme-cleaved oligonucleotides, thereby leading to higher quenching efficiency. PolyC-mediated molecular beacons on MoS<sub>2</sub> have very low background signal, ultrahigh sensitivity (limit of detection ∼3.4 fM), specificity to detect a single nucleotide mismatch, and selectivity to detect target microRNA from serum samples. This detection platform holds great potential for quantitative analysis of miRNAs in clinical diagnosis and biomedical research.

References

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