Area of research
Molecular Biology · Spectroscopy
Research interest
Research interests include Ubiquitin and proteasome pathways, Advanced Proteomics Techniques and Applications, Advanced Biosensing Techniques and Applications, and Cancer-related molecular mechanisms research.
Sensitive and Deep Coverage Phosphoproteome Detection Method Reveals Spleen as a More Sensitive Organ than Liver in Early Detection of Liver Fibrosis-Related Signaling Protein Dysregulation
Phosphoproteomics delineates hepatocellular carcinoma subtypes and pinpoints therapeutic targets
Phosphoproteomics delineates hepatocellular carcinoma subtypes and pinpoints therapeutic targets.
Serum-derived exosome proteomics unveils the distinct and adjustable nature of the dampness constitution in traditional Chinese medicine
Exosomal Proteome from Hepatocellular Carcinoma Patient-Derived Xenograft Mice Serves as Identity of Liver Cancer
Shotgun and targeted proteomics of Mycolicibacterium smegmatis highlight the role of arginine phosphorylation in the functional adaptation to its environment
Quantitative Proteome Analysis of Plasma Extracellular Vesicles Identifies Three Proteins with Potential Diagnostic Value for <i>Mycobacterium bovis</i> Infection in Cows
Droplet Hi-C enables scalable, single-cell profiling of chromatin architecture in heterogeneous tissues
Proteome overview of exosome derived from plasma of cows infected with Mycobacterium bovis
Mycobacterium tuberculosis short mutant H37Rv-S with reduced growth adaptability is more readily recognized by the host immune system
Addendum: Cellular differentiation into hyphae and spores in halophilic archaea
Macrophage-Derived Cathepsin S Remodels the Extracellular Matrix to Promote Liver Fibrogenesis
Development and multi-center validation of a fully automated digital immunoassay for neurofilament light chain: toward a clinical blood test for neuronal injury
Cellular differentiation into hyphae and spores in halophilic archaea
Damaged collagen detected by collagen hybridizing peptide as efficient diagnosis marker for early hepatic fibrosis
Using transcriptomics, proteomics and phosphoproteomics as new approach methodology (NAM) to define biological responses for chemical safety assessment
iTRAQ-based proteomic analysis of Deinococcus radiodurans in response to 12C6+ heavy ion irradiation
Mirror proteases of Ac-Trypsin and Ac-LysargiNase precisely improve novel event identifications in Mycolicibacterium smegmatis MC2 155 by proteogenomic analysis
Serum extracellular vesicle proteome differentiate early stage liver fibrosis
Chemically labeled ThUBD permits rapid and super-sensitive imaging of polyubiquitination signals
The phosphoproteome is a first responder in tiered cellular adaptation to chemical stress followed by proteomics and transcriptomics alteration
Additional file 2 of iTRAQ-based proteomic analysis of Deinococcus radiodurans in response to 12C6+ heavy ion irradiation
Using NAMs to characterize chemical bioactivity at the transcriptomic, proteomic and phosphoproteomic levels
Serum-Derived Exosomal Proteins as Potential Candidate Biomarkers for Hepatocellular Carcinoma
Quantitative proteomics reveals that dormancy-related proteins mediate the attenuation in mycobacterium strains
Quantitative proteomics reveals that dormancy-related proteins mediate the attenuation in mycobacterium strains
Reticulon 3-mediated Chk2/p53 activation suppresses hepatocellular carcinogenesis and is blocked by hepatitis B virus
Quantitative Proteomics Reveals the Development of HBV-Associated Glomerulonephritis Triggered by the Downregulation of SLC7A7
Ubiquitin Linkage Specificity of Deubiquitinases Determines Cyclophilin Nuclear Localization and Degradation
Serum protein complex profiling reveals heterogeneity of Balanced constitutional population in traditional Chinese medicine through blue native polyacrylamide gel electrophoresis