Area of research
Epidemiology · Molecular Biology
Research interest
Research interests include Autophagy in Disease and Therapy, Cancer-related molecular mechanisms research, Genomics and Chromatin Dynamics, and Pluripotent Stem Cells Research.
Genome-wide nucleosome footprints of plasma cfDNA predict preterm birth: A case-control study
Development and application of a highly sensitive quadruple droplet digital PCR method for simultaneous quantification of sulfonamide resistance genes
3D genetic architecture of schizophrenia risk across three neuronal subtypes
CCL2-mediated endothelial injury drives cardiac dysfunction in long COVID
Identification of constrained sequence elements across 239 primate genomes
Schizophrenia Risk Mapping and Functional Engineering of the 3D Genome in Three Neuronal Subtypes
Abstract P1124: Immunosuppression Drug Mediated Cardiovascular Effects
Abstract P2115: Differential Cardiac Remodeling Profile Of Immunosuppression Drugs
Enhanced oxidative stress mediates pathological autophagy and necroptosis in cardiac myocytes in pressure overload induced heart failure in rats
Sphingosine-1-phosphate induces myocyte autophagy after myocardial infarction through mTOR inhibition
Analysis of Whole Genome Sequencing in a Cohort of Individuals with PHACE Syndrome Suggests Dysregulation of RAS/PI3K Signaling
Effects of autophagy on apoptosis of articular chondrocytes in adjuvant arthritis rats
Immune genes are primed for robust transcription by proximal long noncoding RNAs located in nuclear compartments
Honey bee Royalactin unlocks conserved pluripotency pathway in mammals
Antioxidant N-acetylcysteine inhibits maladaptive myocyte autophagy in pressure overload induced cardiac remodeling in rats
Manipulation of nuclear architecture through CRISPR-mediated chromosomal looping
Essential role of lncRNA binding for WDR5 maintenance of active chromatin and embryonic stem cell pluripotency
DMREF: NSF-NSERC: Engineering Novel Quantum Material Platform at Twisted Multilayer Interfaces
Collaborative Research: CSR: Small: Cross-layer learning-based Energy-Efficient and Resilient NoC design for Multicore Systems
CRII: SHF: A Flexible, Learning-Enabled, and Multi-layer Interconnection Architecture for Optimized On-Chip Communications
CAREER: Mesoscopic Quantum Opto-Electronics in Gate-Defined Transition Metal Dichacogenide Nanostructures
Materials World Network: Collaborative Res.: Theoretical, Computational and Experimental Studies of 3D Microstructural Evolution in Ultra-high Volume Fraction Coarsening Systems