Area of research
Cancer Research · Molecular Biology
Research interest
Research interests include MicroRNA in disease regulation, Cancer-related molecular mechanisms research, Circular RNAs in diseases, and Histone Deacetylase Inhibitors Research.
Unveiling impaired vascular function and cellular heterogeneity in diabetic donor-derived vascular organoids
Human blood vessel organoids reveal a critical role for CTGF in maintaining microvascular integrity
Targeting QKI-7 in vivo restores endothelial cell function in diabetes
The Landscape of Coding and Noncoding RNAs in Platelets
Comparative Analysis of Circulating Noncoding RNAs Versus Protein Biomarkers in the Detection of Myocardial Injury
Long Non-coding RNA Structure and Function: Is There a Link?
Inhibition of profibrotic microRNA-21 affects platelets and their releasate
Enhanced Function of Induced Pluripotent Stem Cell-Derived Endothelial Cells Through ESM1 Signaling
Downregulation of MicroRNA-126 Augments DNA Damage Response in Cigarette Smokers and Patients with Chronic Obstructive Pulmonary Disease
CRISPR/Cas9 editing reveals novel mechanisms of clustered microRNA regulation and function
Guidelines for the functional annotation of microRNAs using the Gene Ontology
XBP 1-Deficiency Abrogates Neointimal Lesion of Injured Vessels Via Cross Talk With the PDGF Signaling
MicroRNA Biomarkers for Coronary Artery Disease?
Signature of circulating microRNAs in osteoarthritis
Unspliced X-box-binding Protein 1 (XBP1) Protects Endothelial Cells from Oxidative Stress through Interaction with Histone Deacetylase 3
Circulating MicroRNAs as Novel Biomarkers for Platelet Activation
Extracellular Matrix Secretion by Cardiac Fibroblasts
Impact of intravenous heparin on quantification of circulating microRNAs in patients with coronary artery disease
Oxidative stress in atherosclerosis: The role of microRNAs in arterial remodeling
Prospective Study on Circulating MicroRNAs and Risk of Myocardial Infarction
XBP1 mRNA Splicing Triggers an Autophagic Response in Endothelial Cells through BECLIN-1 Transcriptional Activation
Direct reprogramming of fibroblasts into endothelial cells capable of angiogenesis and reendothelialization in tissue-engineered vessels
Analytical challenges and technical limitations in assessing circulating MiRNAs