Area of research
Molecular Biology · Genetics
Research interest
Research interests include Pluripotent Stem Cells Research, CRISPR and Genetic Engineering, RNA modifications and cancer, and Cancer-related gene regulation.
Electroacupuncture regulates microglia activation through the STING/NF- <i>κ</i> B pathway to reduce pain in bone cancer pain model
m6A-mediated gluconeogenic enzyme PCK1 upregulation protects against hepatic ischemia-reperfusion injury
Anti-HBV Therapy in Hepatocellular Carcinoma May Affect the Symptoms of SARS-CoV-2 Infection
Injectable adhesive hemostatic gel with tumor acidity neutralizer and neutrophil extracellular traps lyase for enhancing adoptive NK cell therapy prevents post-resection recurrence of hepatocellular carcinoma
The m6A methyltransferase Mettl3 deficiency attenuates hepatic stellate cell activation and liver fibrosis
Mettl3-mediated mRNA m6A modification controls postnatal liver development by modulating the transcription factor Hnf4a
An Injectable Epigenetic Autophagic Modulatory Hydrogel for Boosting Umbilical Cord Blood NK Cell Therapy Prevents Postsurgical Relapse of Triple‐Negative Breast Cancer
Evaluation and Genetic Analysis of Parthenocarpic Germplasms in Cucumber
Mesenchymal Stem Cell-Macrophage Crosstalk and Maintenance of Inflammatory Microenvironment Homeostasis
Mesenchymal stem cells alleviate experimental immune-mediated liver injury via chitinase 3-like protein 1-mediated T cell suppression
Targeting Nestin+ hepatic stellate cells ameliorates liver fibrosis by facilitating TβRI degradation
Highly efficient and expedited hepatic differentiation from human pluripotent stem cells by pure small-molecule cocktails
Cerebralcare Granule® attenuates cognitive impairment in rats continuously overexpressing microRNA-30e
Transcriptional Pause Release Is a Rate-Limiting Step for Somatic Cell Reprogramming
Collaborative Research: Understanding Flare Heating in the Chromosphere by High-Resolution Observations and Modeling
CAIG: AI-Driven Generation of Vector Magnetograms in the Chromosphere and Photosphere with Application to Explainable Solar Eruption Predictions
SHINE: Exploring the Initiations of Solar Flares using Deep Learning Methods
Studies of White-Light and Black-Light Flares Using the 1.6 m New Solar Telescope (NST) at Big Bear Solar Observatory (BBSO)
Observations and Analysis of White-light Flares With High Resolution
MRI: Acquisition of an LC-MS/MS Mass Spectrometer by Cleveland State University