Area of research
Nuclear and High Energy Physics · Cancer Research
Research interest
Research focused on Gene knockdown and RNA, with related work in Cell biology, Downregulation and upregulation, Myocardial infarction. Notable publications include 'Fatty Acids Enhance the Maturation of Cardiomyocytes Derived from Human Pluripotent Stem Cells', 'MicroRNA-26 governs profibrillatory inward-rectifier potassium current changes in atrial fibrillation', and 'LncRNA ZFAS1 as a SERCA2a Inhibitor to Cause Intracellular Ca 2+ Overload and Contractile Dysfunction in a Mouse Model of Myocardial Infarction'.
CircRNA CDR1AS promotes cardiac ischemia–reperfusion injury in mice by triggering cardiomyocyte autosis
Macrophage-Secreted U2AF1 Orchestrates Coronary Artery Angiogenesis to Facilitate Myocardial Infarction Repair Through the Regulation of Yap1 Variable Splicing
LncRNA CCRR maintains Ca2+ homeostasis against myocardial infarction through the FTO-SERCA2a pathway
The effect of macrophage-cardiomyocyte interactions on cardiovascular diseases and development of potential drugs
IL1RL2 is related to the expression and prognosis of bladder cancer
LncRNA CCRR Attenuates Postmyocardial Infarction Inflammatory Response by Inhibiting the TLR Signalling Pathway
GDF11 promotes wound healing in diabetic mice via stimulating HIF-1ɑ-VEGF/SDF-1ɑ-mediated endothelial progenitor cell mobilization and neovascularization
Research advances on circulating long noncoding RNAs as biomarkers of cardiovascular diseases
LncRNA-ZFAS1 Promotes Myocardial Ischemia-Reperfusion Injury Through DNA Methylation-Mediated Notch1 Down-Regulation in Mice
NAD+ attenuates cardiac injury after myocardial infarction in diabetic mice through regulating alternative splicing of VEGF in macrophages
LncRNA MIAT impairs cardiac contractile function by acting on mitochondrial translocator protein TSPO in a mouse model of myocardial infarction
MicroRNA-153 impairs presynaptic plasticity by blocking vesicle release following chronic brain hypoperfusion
GDF11 replenishment protects against hypoxia-mediated apoptosis in cardiomyocytes by regulating autophagy
Up‐regulation of miR‐195 contributes to cardiac hypertrophy‐induced arrhythmia by targeting calcium and potassium channels
Fatty Acids Enhance the Maturation of Cardiomyocytes Derived from Human Pluripotent Stem Cells
lncRNA-ZFAS1 induces mitochondria-mediated apoptosis by causing cytosolic Ca2+ overload in myocardial infarction mice model
MicroRNA-132 regulates total protein of Nav1.1 and Nav1.2 in the hippocampus and cortex of rat with chronic cerebral hypoperfusion
LncRNA <i>ZFAS1</i> as a SERCA2a Inhibitor to Cause Intracellular Ca <sup>2+</sup> Overload and Contractile Dysfunction in a Mouse Model of Myocardial Infarction
Long non-coding RNA CCRR controls cardiac conduction via regulating intercellular coupling
Activation of cardiac TrkB receptor by its small molecular agonist 7,8-dihydroxyflavone inhibits doxorubicin-induced cardiotoxicity via enhancing mitochondrial oxidative phosphorylation
Circulating long non‐coding <scp>RNA</scp>s <i><scp>NRON</scp></i> and <i><scp>MHRT</scp></i> as novel predictive biomarkers of heart failure
Reciprocal Changes of Circulating Long Non-Coding RNAs ZFAS1 and CDR1AS Predict Acute Myocardial Infarction
Expression signature of lncRNAs and their potential roles in cardiac fibrosis of post-infarct mice
<scp>BMP</scp>7 enhances the effect of <scp>BMSC</scp>s on extracellular matrix remodeling in a rabbit model of intervertebral disc degeneration
MicroRNA-27a Promotes Inefficient Lysosomal Clearance in the Hippocampi of Rats Following Chronic Brain Hypoperfusion
Overexpression of Paxillin Correlates with Tumor Progression and Predicts Poor Survival in Glioblastoma
KIF23 is an independent prognostic biomarker in glioma, transcriptionally regulated by TCF-4
Activation of Cdk5/p25 and tau phosphorylation following chronic brain hypoperfusion in rats involves micro<scp>RNA</scp>‐195 down‐regulation
MicroRNA-30c contributes to the development of hypoxia pulmonary hypertension by inhibiting platelet-derived growth factor receptor β expression
MicroRNA-9 induces defective trafficking of Nav1.1 and Nav1.2 by targeting Navβ2 protein coding region in rat with chronic brain hypoperfusion