Area of research
Molecular Biology · Cancer Research
Research interest
Research interests include Circular RNAs in diseases, MicroRNA in disease regulation, Extracellular vesicles in disease, and Cancer-related molecular mechanisms research.
Exomeres and supermeres: Current advances and perspectives
Neutrophil membrane engineered human umbilical cord MSC-derived sEVs enhance anti-tumor efficacy for gastric cancer via delivering pentraxin 3
Small extracellular vesicles: crucial mediators for prostate cancer
Plant‐Derived Exosome‐Like Nanoparticles: Innovative Nanomedicine for Therapeutic Applications
Exosomal circ50547 as a potential marker and promotor of gastric cancer progression via miR-217/HNF1B axis
Emerging advanced approaches for liquid biopsy: <i>in situ</i> nucleic acid assays of extracellular vesicles
cGAS/STING pathway and gastrointestinal cancer: Mechanisms and diagnostic and therapeutic targets (Review)
Exosomal circRNA: emerging insights into cancer progression and clinical application potential
CircRNA <i>CDR1as</i>: a novel diagnostic and prognostic biomarker for gastric cancer
Adipose Tissue-Derived Extracellular Vesicles: A Promising Biomarker and Therapeutic Strategy for Metabolic Disorders
Engineered Exosomes for Drug Delivery in Cancer Therapy: A PromisingApproach and Application
Preconditioning and Engineering Strategies for Improving the Efficacy of Mesenchymal Stem Cell-Derived Exosomes in Cell-Free Therapy
Intestinal Fibrosis in Inflammatory Bowel Disease and the Prospects of Mesenchymal Stem Cell Therapy
Circular RNA EIF4G3 suppresses gastric cancer progression through inhibition of β-catenin by promoting δ-catenin ubiquitin degradation and upregulating SIK1
Engineered exosome-mediated delivery of circDIDO1 inhibits gastric cancer progression via regulation of MiR-1307-3p/SOCS2 Axis
Exosomal circRNAs: Novel biomarkers and therapeutic targets for gastrointestinal tumors
Mesenchymal Stem Cells and Their Small Extracellular Vesicles as Crucial Immunological Efficacy for Hepatic Diseases
Additional file 3 of Circular RNA EIF4G3 suppresses gastric cancer progression through inhibition of β-catenin by promoting δ-catenin ubiquitin degradation and upregulating SIK1
Additional file 1 of Circular RNA EIF4G3 suppresses gastric cancer progression through inhibition of β-catenin by promoting δ-catenin ubiquitin degradation and upregulating SIK1
CircDIDO1 inhibits gastric cancer progression by encoding a novel DIDO1-529aa protein and regulating PRDX2 protein stability
Circular RNA ITCH suppresses metastasis of gastric cancer via regulating miR-199a-5p/Klotho axis
Circular RNA CDR1as Inhibits the Metastasis of Gastric Cancer through Targeting miR-876-5p/GNG7 Axis
3,3′-Diindolylmethane Promotes Gastric Cancer Progression via β-TrCP-Mediated NF-κB Activation in Gastric Cancer-Derived MSCs
Bacterial Lipopolysaccharide Augmented Malignant Transformation and Promoted the Stemness in Prostate Cancer Epithelial Cells
CircRNA: a rising star in gastric cancer
Efficacy and prognosis of radiotherapy for patients with postoperative pelvic recurrence in uterine cervical cancer
Diagnostic significance of urinary long non-coding PCA3 RNA in prostate cancer