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Yuanfeng Pang

Researcher at Capital Medical University

Publications -  9
Citations -  884

Yuanfeng Pang is an academic researcher from Capital Medical University. The author has contributed to research in topics: Aptamer & Surface plasmon resonance. The author has an hindex of 7, co-authored 9 publications receiving 498 citations.

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Dual-SERS biosensor for one-step detection of microRNAs in exosome and residual plasma of blood samples for diagnosing pancreatic cancer.

TL;DR: A DSN-assisted dual-SERS biosensor for microRNA-10b in exosome and residual plasma of blood samples detection based on the Fe3O4 @Ag-DNA-Au@Ag@DTNB (SERS tag) conjugates and the recycling signal amplification.
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Fe₃O₄@Ag magnetic nanoparticles for microRNA capture and duplex-specific nuclease signal amplification based SERS detection in cancer cells.

TL;DR: The result provides a novel proposal to combine the perfect single-base recognition and signal-amplifying ability of the endonuclease DSN with cost-effective SERS strategy for miRNA point-of-care (POC) clinical diagnostics.
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A fluorescent aptasensor for H5N1 influenza virus detection based-on the core-shell nanoparticles metal-enhanced fluorescence (MEF)

TL;DR: A fluorescent aptasensor system has been designed for the sensitive detection of recombinant hemagglutinin (rHA) protein of the H5N1 influenza virus in human serum that does not require covalent labeling with fluorophores to the aptamer, the background noise is very low and the whole detection process can be finished in a PE tube within 30min.
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Personalized detection of circling exosomal PD-L1 based on Fe3O4@TiO2 isolation and SERS immunoassay.

TL;DR: Based on the personalized SERS signal analysis, NSCLC patients can be distinguished from the healthy controls easily and the advantage of clearly individual quantification may help the doctor to discover the relationship of exosomal PD-L1 and the immnuotherapy responds in individual level.
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Dual-recognition surface-enhanced Raman scattering(SERS)biosensor for pathogenic bacteria detection by using vancomycin-SERS tags and aptamer-Fe3O4@Au.

TL;DR: The SERS strategy could be used to detect a broad range of bacteria by using different aptamers, moreover, the simple operation and precise quantification ability empower this assay great potential in the application of food safety and infectious disease point-of-care diagnosis.