Area of research
Molecular Biology · Rheumatology
Research interest
Research interests include Myocardial infarction, Biology, Mitosis, Acute megakaryoblastic leukemia, Cancer research, and Aurora inhibitor.
Conditional deletion of HDAC4 from collagen type 2α1-expressing cells increases angiogenesis in vivo
Histone deacetylase 4 deletion results in abnormal chondrocyte hypertrophy and premature ossification from collagen type 2α1‑expressing cells
Ipriflavone attenuates the degeneration of cartilage by blocking the Indian hedgehog pathway
Histone Deacetylase 4 Promotes Osteosarcoma Cell Proliferation and Invasion by Regulating Expression of Proliferating Cell Nuclear Antigen
A novel therapeutic strategy for cartilage diseases based on lipid nanoparticle-RNAi delivery system
Transgenic overexpression of active HDAC4 in the heart attenuates cardiac function and exacerbates remodeling in infarcted myocardium
The Effects of Indian Hedgehog Deletion on Mesenchyme Cells: Inducing Intermediate Cartilage Scaffold Ossification to Cause Growth Plate and Phalange Joint Absence, Short Limb, and Dwarfish Phenotypes
miR-195 contributes to human osteoarthritis via targeting PTHrP
Disrupting the Indian hedgehog signaling pathway in vivo attenuates surgically induced osteoarthritis progression in Col2a1-CreER T2 ; Ihhfl/fl mice
Indian Hedgehog in Synovial Fluid Is a Novel Marker for Early Cartilage Lesions in Human Knee Joint
MicroRNA‐1 regulates chondrocyte phenotype by repressing histone deacetylase 4 during growth plate development
Mitogen-activated protein kinase p38 induces HDAC4 degradation in hypertrophic chondrocytes
Identification of Regulators of Polyploidization Presents Therapeutic Targets for Treatment of AMKL
Activation of Indian hedgehog promotes chondrocyte hypertrophy and upregulation of MMP-13 in human osteoarthritic cartilage
Inhibition of Histone Deacetylase-induced Myocardial Repair Is Mediated by c-kit in Infarcted Hearts
Subcellular relocation of histone deacetylase 4 regulates growth plate chondrocyte differentiation through Ca<sup>2+</sup>/calmodulin-dependent kinase IV