Area of research
Genetics · Public Health, Environmental and Occupational Health
Research interest
Research interests include Biology, Microbiology, Autophagy, Medicine, Oryza sativa, and Quantitative trait locus.
Targeting Matrix Metalloproteinase-9 to Alleviate T Cell Exhaustion and Improve Sepsis Prognosis
Discovery of Antimicrobial Lysins from the “Dark Matter” of Uncharacterized Phages Using Artificial Intelligence
LPCAT3 exacerbates early brain injury and ferroptosis after subarachnoid hemorrhage in rats
Mesenchymal stromal cells ameliorate diabetes‐induced muscle atrophy through exosomes by enhancing AMPK/ULK1‐mediated autophagy
PlyKp104, a Novel Phage Lysin for the Treatment of Klebsiella pneumoniae, Pseudomonas aeruginosa, and Other Gram-Negative ESKAPE Pathogens
Responsive metal–organic framework nanocarrier delivery system: An effective solution against bacterial infection
Mining Beneficial Genes for Salt Tolerance From a Core Collection of Rice Landraces at the Seedling Stage Through Genome-Wide Association Mapping
The global emergence of a novel Streptococcus suis clade associated with human infections
Application of a novel phage ZPAH7 for controlling multidrug-resistant Aeromonas hydrophila on lettuce and reducing biofilms
Integrin α5β1, as a Receptor of Fibronectin, Binds the FbaA Protein of Group A <i>Streptococcus</i> To Initiate Autophagy during Infection
Erratum for Wang et al., “Integrin α5β1, as a Receptor of Fibronectin, Binds the FbaA Protein of Group A <i>Streptococcus</i> To Initiate Autophagy during Infection”
Silencing of OTUB1 inhibits migration of human glioma cells in vitro
Association Mapping for Important Agronomic Traits in Core Collection of Rice (Oryza sativa L.) with SSR Markers
Regulation of Inhibition of Neutrophil Infiltration by the Two-Component Regulatory System CovRS in Subcutaneous Murine Infection with Group A Streptococcus
Group A Streptococcus Secreted Esterase Hydrolyzes Platelet-Activating Factor to Impede Neutrophil Recruitment and Facilitate Innate Immune Evasion
Wide‐Compatibility Gene <i>S<sub>5</sub><sup>n</sup></i> Exploited by Functional Molecular Markers and Its Effect on Fertility of Intersubspecific Rice Hybrids