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Xiaopei Qiu

Researcher at Third Military Medical University

Publications -  13
Citations -  611

Xiaopei Qiu is an academic researcher from Third Military Medical University. The author has contributed to research in topics: Hybridization probe & Chemistry. The author has an hindex of 6, co-authored 11 publications receiving 347 citations. Previous affiliations of Xiaopei Qiu include Chongqing University.

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Rolling Circular Amplification (RCA)-Assisted CRISPR/Cas9 Cleavage (RACE) for Highly Specific Detection of Multiple Extracellular Vesicle MicroRNAs

TL;DR: The high consistence between the proposed approach RCA-assisted CRISPR/Cas9 cleavage (RACE) and reverse transcription quantitative polymerase chain reaction (RT-qPCR) in detecting EV-derived miRNAs abundance from both cultured cancer cells and clinical lung cancer patients validated its robustness, revealing its potentials in the screening, diagnosis and prognosis of various diseases.
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Graphene quantum dots in biomedical applications: Recent advances and future challenges

TL;DR: This review of GQDs-based nanohybrid materials focuses on the most recent emerging developments including synthesis methods, in vivo imaging and in vitro biosensing applications, and unresolved problematic and controversial issues facing their biomedical applications.
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Rapid and sensitive exosome detection with CRISPR/Cas12a.

TL;DR: This method provides a highly sensitive and specific method for the detection of exosomes and offers an avenue toward future exosome-based diagnosis of diseases.
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Duplex-specific nuclease-mediated bioanalysis

TL;DR: An overview of the current knowledge of DSNs is presented, with special emphasis on DSN-mediated isothermal signal amplification strategies for trace miRNA detection and improved personalized medicine, preventive medicine, and translational medicine.
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Dynamic Monitoring of MicroRNA-DNA Hybridization Using DNAase-Triggered Signal Amplification.

TL;DR: An amplification-free strategy for real-time monitoring of miRNA-DNA hybridization that integrates the advantages of both duplex-specific nuclease (DSN)-triggered signal amplification and single-stranded DNA probe coating facilitated by reduced graphene oxide is developed.