Area of research
Molecular Biology · Biomedical Engineering
Research interest
Research focused on Aptamer and Exonuclease, with related work in Horseradish peroxidase, Exonuclease III, Fluorescence. Notable publications include 'A colorimetric aptasensor for chloramphenicol in fish based on double-stranded DNA antibody labeled enzyme-linked polymer nanotracers for signal amplification', 'Fluorescent aptasensor for chloramphenicol detection using DIL-encapsulated liposome as nanotracer', and 'A homogeneous and “off–on” fluorescence aptamer-based assay for chloramphenicol using vesicle quantum dot-gold colloid composite probes'.
Solid-State Luminescence Turn-On Sensing Using MOF-Confined Reporter–Spacer–Receptor Architectures Facilitated by Quencher Displacement
A POCT colorimetric aptasensor for streptomycin detection using porous silica beads- enzyme linked polymer aptamer probes and exonuclease-assisted target recycling for signal amplification
Fluorescent aptasensor for chloramphenicol detection using DIL-encapsulated liposome as nanotracer
A homogeneous and “off–on” fluorescence aptamer-based assay for chloramphenicol using vesicle quantum dot-gold colloid composite probes
A triple-amplification SPR electrochemiluminescence assay for chloramphenicol based on polymer enzyme-linked nanotracers and exonuclease-assisted target recycling
A colorimetric aptasensor for chloramphenicol in fish based on double-stranded DNA antibody labeled enzyme-linked polymer nanotracers for signal amplification
An ultrasensitive fluorescence aptasensor for chloramphenicol based on FRET between quantum dots as donor and the magnetic SiO2@Au NPs probe as acceptor with exonuclease-assisted target recycling
Switch-on fluorescence scheme for antibiotics based on a magnetic composite probe with aptamer and hemin/G-quadruplex coimmobilized nano-Pt–luminol as signal tracer
A triple-amplification colorimetric assay for antibiotics based on magnetic aptamer–enzyme co-immobilized platinum nanoprobes and exonuclease-assisted target recycling