Area of research
Cancer Research · Physiology
Research interest
Research interests include Cancer-related molecular mechanisms research, Telomeres, Telomerase, and Senescence, Tissue Engineering and Regenerative Medicine, and MicroRNA in disease regulation.
VEGF‐FGF Signaling Activates Quiescent CD63<sup>+</sup> Liver Stem Cells to Proliferate and Differentiate
Irisin exhibits neuroprotection by preventing mitochondrial damage in Parkinson’s disease
Natural antisense RNA Foxk1-AS promotes myogenic differentiation by inhibiting Foxk1 activity
Transcriptome sequencing reveals Gastrodia elata Blume could increase the cell viability of eNPCs under hypoxic condition by improving DNA damage repair ability
Pten is a key intrinsic factor regulating raphe 5-HT neuronal plasticity and depressive behaviors in mice
Long noncoding RNA CCDC144NL-AS1 knockdown induces naïve-like state conversion of human pluripotent stem cells
A novel long noncoding RNA lnc158 promotes the differentiation of mouse neural precursor cells into oligodendrocytes by targeting nuclear factor-IB
Coupled electrophysiological recording and single cell transcriptome analyses revealed molecular mechanisms underlying neuronal maturation
Single-Cell Transcriptome Analyses Reveal Signals to Activate Dormant Neural Stem Cells
Identification and functional analysis of long non-coding RNAs in mouse cleavage stage embryonic development based on single cell transcriptome data
Computational Identification and Experimental Validation of MicroRNAs Binding to the Fragile X Syndrome Gene Fmr1
MicroRNA-130b targets Fmr1 and regulates embryonic neural progenitor cell proliferation and differentiation