Area of research
Molecular Biology · Immunology
Research interest
Research interests include Biology, Cell biology, Nuclear receptor, Inflammation, Macrophage, and Transcription factor.
Benefits and challenges of the integration of haptics‐enhanced virtual reality training within dental curricula
The epigenetic state of IL-4-polarized macrophages enables inflammatory cistromic expansion and extended synergistic response to TLR ligands
Agonist binding directs dynamic competition among nuclear receptors for heterodimerization with retinoid X receptor
Dynamic changes to lipid mediators support transitions among macrophage subtypes during muscle regeneration
Simultaneous Mapping of Molecular Proximity and Comobility Reveals Agonist-Enhanced Dimerization and DNA Binding of Nuclear Receptors
Transcriptional regulation of macrophage cholesterol efflux and atherogenesis by a long noncoding RNA
Hepatocyte-Macrophage Acetoacetate Shuttle Protects against Tissue Fibrosis
Highly Dynamic Transcriptional Signature of Distinct Macrophage Subsets during Sterile Inflammation, Resolution, and Tissue Repair
Macrophage PPARγ, a Lipid Activated Transcription Factor Controls the Growth Factor GDF3 and Skeletal Muscle Regeneration
OCT4 Acts as an Integrator of Pluripotency and Signal-Induced Differentiation
Ligand Binding Shifts Highly Mobile Retinoid X Receptor to the Chromatin-Bound State in a Coactivator-Dependent Manner, as Revealed by Single-Cell Imaging
PPARγ-Mediated and Arachidonic Acid–Dependent Signaling Is Involved in Differentiation and Lipid Production of Human Sebocytes