Area of research
Cell Biology · Molecular Biology
Research interest
Research interests include Proteoglycans and glycosaminoglycans research, Glycosylation and Glycoproteins Research, Cancer-related molecular mechanisms research, and Trauma, Hemostasis, Coagulopathy, Resuscitation.
Association of low angiomotin-p130 and high YAP1 nuclear expression with adverse prognosis in epithelial ovarian cancer.
Heparan sulfate regulates the fate decisions of human pluripotent stem cells
miR-506-3p induces autophagy of renal tubular epithelial cells in sepsis through targeting PI3K pathway
ICAM-1-related noncoding RNA accelerates atherosclerosis by amplifying NF-κB signaling
A novel RANKL‐targeted flavonoid glycoside prevents osteoporosis through inhibiting NFATc1 and reactive oxygen species
<p>Downregulation of circNRIP1 Suppresses the Paclitaxel Resistance of Ovarian Cancer via Regulating the miR-211-5p/HOXC8 Axis</p>
Asiatic Acid Inhibits OVX-Induced Osteoporosis and Osteoclastogenesis Via Regulating RANKL-Mediated NF-κb and Nfatc1 Signaling Pathways
Increased CHST15 follows decline in arylsulfatase B (ARSB) and disinhibition of non-canonical WNT signaling: potential impact on epithelial and mesenchymal identity
Chrysosplenetin promotes osteoblastogenesis of bone marrow stromal cells via Wnt/β-catenin pathway and enhances osteogenesis in estrogen deficiency-induced bone loss
Analysis of circulating microRNAs aberrantly expressed in alcohol-induced osteonecrosis of femoral head
EGFL7: Master regulator of cancer pathogenesis, angiogenesis and an emerging mediator of bone homeostasis
<i>Asiaticoside</i>, a component of <i>Centella asiatica</i> attenuates RANKL‐induced osteoclastogenesis via NFATc1 and NF‐<i>κ</i>B signaling pathways
Structural and Functional Components of the Skate Sensory Organ Ampullae of Lorenzini
Decline in arylsulfatase B expression increases EGFR expression by inhibiting the protein-tyrosine phosphatase SHP2 and activating JNK in prostate cells
Predicting the collapse of the femoral head due to osteonecrosis: From basic methods to application prospects