Area of research
Plant Science · Radiology, Nuclear Medicine and Imaging
Research interest
Research interests include Chemistry, Immunoassay, Chromatography, Mycotoxin, Ochratoxin A, and Detection limit.
Biosynthetic small molecule antigens mimics medicated lateral flow immunoassay for mycotoxin Fumonisin B1 using nanobody fusion proteins
Application of metagenomic next-generation sequencing in pathogen detection of lung infections
Engineered Nanobodies-Based Sandwich-Competitive Immunoassay Broadens the Detection Range for Aflatoxin B1
Sequence‐based design and construction of synthetic nanobody library
An Immuno-Separated Assay for Ochratoxin Detection Coupled with a Nano-Affinity Cleaning-Up for LC-Confirmation
Chemical modification of M13 bacteriophage as nanozyme container for dramatically enhanced sensitivity of colorimetric immunosensor
Tandem nanobody: A feasible way to improve the capacity of affinity chromatography
Biosynthetic Mycotoxin Conjugate Mimetics-Mediated Green Strategy for Multiplex Mycotoxin Immunochromatographic Assay
Single-chain variable fragment antibody-based immunochromatographic strip for rapid detection of fumonisin B1 in maize samples
Engineering a recombination neutral protease I from <i>Aspergillus oryzae</i> to improve enzyme activity at acidic pH
The <i><b>ctnF</b></i><b>gene is involved in citrinin and pigment synthesis in</b><i><b>Monascus aurantiacus</b></i>
Streptococcal protein G based fluorescent universal probes and biosynthetic mimetics for Fumonisin B1 immunochromatographic assay
Anti-idiotypic VHH mediated environmentally friendly immunoassay for citrinin without mycotoxin
Phage displayed mimotope peptide-based immunosensor for green and ultrasensitive detection of mycotoxin deoxynivalenol
One-step orientated immobilization of nanobodies and its application for immunoglobulin purification
Development of Real-Time Immuno-PCR Based on Phage Displayed an Anti-Idiotypic Nanobody for Quantitative Determination of Citrinin in Monascus
Ultrasensitive and green electrochemical immunosensor for mycotoxin ochratoxin A based on phage displayed mimotope peptide
A peptide/maltose-binding protein fusion protein used to replace the traditional antigen for immunological detection of deoxynivalenol in food and feed
Antibody Developments and Immunoassays for Mycotoxins
An ultrasensitive electrochemical immunosensor for Cry1Ab based on phage displayed peptides
Anti-idiotypic nanobody-alkaline phosphatase fusion proteins: Development of a one-step competitive enzyme immunoassay for fumonisin B 1 detection in cereal
Phage-Mediated Immuno-PCR for Ultrasensitive Detection of Cry1Ac Protein Based on Nanobody
Phage displayed anti-idiotypic nanobody mediated immuno-PCR for sensitive and environmentally friendly detection of mycotoxin ochratoxin A
Anti-idiotypic nanobody: A strategy for development of sensitive and green immunoassay for Fumonisin B 1
Deoxynivalenol-mimic nanobody isolated from a naïve phage display nanobody library and its application in immunoassay
Nanobody medicated immunoassay for ultrasensitive detection of cancer biomarker alpha-fetoprotein
Anti-idiotypic VHH phage display-mediated immuno-PCR for ultrasensitive determination of mycotoxin zearalenone in cereals
Modification of a deoxynivalenol-antigen-mimicking nanobody to improve immunoassay sensitivity by site-saturation mutagenesis
New Approach for Development of Sensitive and Environmentally Friendly Immunoassay for Mycotoxin Fumonisin B<sub>1</sub> Based on Using Peptide-MBP Fusion Protein as Substitute for Coating Antigen
Use of Cloneable Peptide–MBP Fusion Protein as a Mimetic Coating Antigen in the Standardized Immunoassay for Mycotoxin Ochratoxin A