Area of research
Cancer Research · Molecular Biology
Research interest
Research interests include Cancer-related molecular mechanisms research, MicroRNA in disease regulation, Circular RNAs in diseases, and RNA modifications and cancer.
RUNX2 Phase Separation Mediates Long-Range Regulation Between Osteoporosis-Susceptibility Variant and XCR1 to Promote Osteoblast Differentiation.
Deficiency of Cbfβ in articular cartilage leads to osteoarthritis-like phenotype through Hippo/Yap, TGFβ, and Wnt/β-catenin signaling pathways
Cbfβ regulates Wnt/β-catenin, Hippo/Yap, and Tgfβ signaling pathways in articular cartilage homeostasis and protects from ACLT surgery-induced osteoarthritis
Deficiency of Cbfβ in articular cartilage leads to osteoarthritis-like phenotype through Hippo/Yap, TGFβ, and Wnt/β-catenin signaling pathways.
Isolation and culture of human primary osteoblasts: Comparing the effects of differences in method details on osteoblast characteristics.
Mosquitocidal toxin-like islands in Bacillus thuringiensis S2160-1 revealed by complete-genome sequence and MS proteomic analysis
Dysregulated transfer RNA-derived small RNAs as potential gastric cancer biomarkers
Enhancer variants on chromosome 2p14 regulating SPRED2 and ACTR2 act as a signal amplifier to protect against rheumatoid arthritis.
Long non-coding RNA <i>NRAV</i> in the 12q24.31 risk locus drives gastric cancer development through glucose metabolism reprogramming
Runx1 is a key regulator of articular cartilage homeostasis by orchestrating YAP, TGFβ, and Wnt signaling in articular cartilage formation and osteoarthritis
Runx1 is a key regulator of articular cartilage homeostasis by orchestrating YAP, TGFβ, and Wnt signaling in articular cartilage formation and osteoarthritis.
MiR-138-5p Targets MACF1 to Aggravate Aging-related Bone Loss.
GPR125 positively regulates osteoclastogenesis potentially through AKT-NF-κB and MAPK signaling pathways
Exosome-Derived microRNA: Implications in Melanoma Progression, Diagnosis and Treatment
WDR72 regulates vesicle trafficking in ameloblasts
Total flavonoids of Rhizoma Drynariae enhances CD31<sup>hi</sup>Emcn<sup>hi</sup> vessel formation and subsequent bone regeneration in rat models of distraction osteogenesis by activating PDGF‑BB/VEGF/RUNX2/OSX signaling axis
GPR125 positively regulates osteoclastogenesis potentially through AKT-NF-κB and MAPK signaling pathways.
Long noncoding RNA Lnc-DIF inhibits bone formation by sequestering miR-489-3p.
Extracellular vesicle drug occupancy enables real-time monitoring of targeted cancer therapy
Role of Exosomal MicroRNAs and Their Crosstalk with Oxidative Stress in the Pathogenesis of Osteoporosis
MACF1 alleviates aging-related osteoporosis via HES1.
Precision treatment exploration of breast cancer based on heterogeneity analysis of lncRNAs at the single-cell level
New insights for precision treatment of glioblastoma from analysis of single-cell lncRNA expression
Runx1 up-regulates chondrocyte to osteoblast lineage commitment and promotes bone formation by enhancing both chondrogenesis and osteogenesis
Runx1 up-regulates chondrocyte to osteoblast lineage commitment and promotes bone formation by enhancing both chondrogenesis and osteogenesis.
Recombinant Irisin Prevents the Reduction of Osteoblast Differentiation Induced by Stimulated Microgravity through Increasing β-Catenin Expression.
LncRNA HOTAIR Participates in Microglia Activation and Inflammatory Factor Release by Regulating the Ubiquitination of MYD88 in Traumatic Brain Injury
Silencing of miR-138-5p sensitizes bone anabolic action to mechanical stimuli.
The Application of MSCs-Derived Extracellular Vesicles in Bone Disorders: Novel Cell-Free Therapeutic Strategy.
Mesenchymal MACF1 Facilitates SMAD7 Nuclear Translocation to Drive Bone Formation