Area of research
Immunology · Oncology
Research interest
Research interests include Cancer research, Apoptosis, Cancer stem cell, CD44, Medicine, and Cell growth.
Decreasing lncRNA HOTAIR expression inhibits human colorectal cancer stem cells.
PubMed 2016cited by 94position: first
Next-generation proteasome inhibitor MLN9708 sensitizes breast cancer cells to doxorubicin-induced apoptosis
Wip1 inhibitor GSK2830371 inhibits neuroblastoma growth by inducing Chk2/p53-mediated apoptosis
MiRNA-34a overexpression inhibits multiple myeloma cancer stem cell growth in mice by suppressing TGIF2.
PubMed 2016cited by 35position: last
Reinforcing B16F10/GPI-IL-21 vaccine efficacy against melanoma by injecting mice with shZEB1 plasmid or miR200c agomir
Downregulated lincRNA HOTAIR expression in ovarian cancer stem cells decreases its tumorgeniesis and metastasis by inhibiting epithelial-mesenchymal transition
Effect of targeted ovarian cancer immunotherapy using ovarian cancer stem cell vaccine
Decrease of ZEB1 expression inhibits the B16F10 cancer stem-like properties
Combining TGF-β1 knockdown and miR200c administration to optimize antitumor efficacy of B16F10/GPI-IL-21 vaccine
Cancer stem cell vaccine expressing ESAT-6-gpi and IL-21 inhibits melanoma growth and metastases.
PubMed 2015cited by 15position: last
Inhibitory effect of epirubicin-loaded lipid microbubbles with conjugated anti-ABCG2 antibody combined with therapeutic ultrasound on multiple myeloma cancer stem cells
A small-molecule inhibitor of UBE2N induces neuroblastoma cell death via activation of p53 and JNK pathways
mTOR ATP-competitive inhibitor INK128 inhibits neuroblastoma growth via blocking mTORC signaling
Regulation gene expression of miR200c and ZEB1 positively enhances effect of tumor vaccine B16F10/GPI-IL-21 on inhibition of melanoma growth and metastasis
Effect of downregulation of ZEB1 on vimentin expression, tumour migration and tumourigenicity of melanoma B16F10 cells and CSCs
Targeted therapeutic effect of anti-ABCG2 antibody combined with nano silver and vincristine on mouse myeloma cancer stem cells
Fe3O4 nanoparticle loaded paclitaxel induce multiple myeloma apoptosis by cell cycle arrest and increase cleavage of caspases in vitro