Area of research
Molecular Biology · Cancer Research
Research interest
Research interests include Advanced biosensing and bioanalysis techniques, RNA Interference and Gene Delivery, MicroRNA in disease regulation, and Biosensors and Analytical Detection.
MOF-Integrated Single-Enzymatic Colorimetric Paper-Based Biosensor for Point-of-Care Testing of Organophosphorus Pesticides
A DNA tetrahedron-based light-controlled intramolecular CHA for spatiotemporal imaging of miRNA in living cells with high sensitivity and imaging contrast
A simple two-dimensional metal–organic framework–based phototherapy nanoplatform with a triple-synergistic mechanism for enhanced wound infection treatment
A Simple and Robust Exponential Amplification Reaction (EXPAR)-Based Hairpin Template (exp-Hairpin) for Highly Specific, Sensitive, and Universal MicroRNA Detection
Toehold Strand Displacement-Mediated Exponential HCR for Highly Sensitive and Specific Analysis of miRNA in Living Cells
MOF-functionalized paper-based biosensors: Fabrications, mechanisms and applications
Dual-Signal Amplification Strategy Based on Catalytic Hairpin Assembly and APE1-Assisted Amplification for High-Contrast miRNA Imaging in Living Cells
Dual miRNA-Triggered DNA Walker Assisted by APE1 for Specific Recognition of Tumor Cells
CRISPR/Pepper‐tDeg: A Live Imaging System Enables Non‐Repetitive Genomic Locus Analysis with One Single‐Guide RNA
MiRNA and mRNA-Controlled Double-Cascaded Amplifying Circuit Nanosensor for Accurate Discrimination of Breast Cancers in Living Cells, Animals, and Organoids
A dual-signal amplification strategy based on rolling circle amplification and APE1-assisted amplification for highly sensitive and specific miRNA analysis for early diagnosis of alzheimer's disease
DNAzyme-Amplified Cascade Catalytic Hairpin Assembly Nanosystem for Sensitive MicroRNA Imaging in Living Cells
MOF-Based Materials for Glucose Detection
A smartphone-assisted “all-in-one” paper chip for one-pot noninvasive detection of salivary glucose level
Endogenous Enzyme-Powered DNA Nanomotor Operating in Living Cells for microRNA Imaging
Dephosphorylation Switch DNAzyme-RCA Circuit: A Robust Strategy for the Homogeneous and Reliable Detection of FTO Demethylase
On-Site-Activated Transmembrane Logic DNA Nanodevice Enables Highly Specific Imaging of Cancer Cells by Targeting Tumor-Related Nucleolin and Intracellular MicroRNA
An Enzyme‐Engineered Nonporous Copper(I) Coordination Polymer Nanoplatform for Cuproptosis‐Based Synergistic Cancer Therapy
Dual-Locked DNAzyme Platform for <i>In Vitro</i> and <i>In Vivo</i> Discrimination of Cancer Cells
Smart Hairpins@MnO<sub>2</sub> Nanosystem Enables Target-Triggered Enzyme-Free Exponential Amplification for Ultrasensitive Imaging of Intracellular MicroRNAs in Living Cells
Fluorescent on-site detection of multiple pathogens using smartphone-based portable device with paper-based isothermal amplification chip
Design of portable electrochemiluminescence sensing systems for point-of-care-testing applications
Ultrathin 2D Copper(I) 1,2,4‐Triazolate Coordination Polymer Nanosheets for Efficient and Selective Gene Silencing and Photodynamic Therapy
Construction of a Zinc Porphyrin–Fullerene-Derivative Based Nonenzymatic Electrochemical Sensor for Sensitive Sensing of Hydrogen Peroxide and Nitrite
A label-free and PCR-free electrochemical assay for multiplexed microRNA profiles by ligase chain reaction coupling with quantum dots barcodes
Attomolar Determination of Coumaphos by Electrochemical Displacement Immunoassay Coupled with Oligonucleotide Sensing