Area of research
Epidemiology · Infectious Diseases
Research interest
Research focused on Lipid metabolism and Betaine, with related work in Transcriptome, Gene, Steatosis. Notable publications include 'Integrative ATAC-seq and RNA-seq Analysis of the Longissimus Muscle of Luchuan and Duroc Pigs', 'Integrated Transcriptomic and Translatomic Inquiry of the Role of Betaine on Lipid Metabolic Dysregulation Induced by a High-Fat Diet', and 'The influence of COVID-19 on colorectal cancer was investigated using bioinformatics and systems biology techniques'.
Dietary Betaine Improves Glucose Metabolism in Obese Mice
The landscape of super-enhancer regulates remote target gene transcription through loop domains in adipose tissue of pig
The influence of COVID-19 on colorectal cancer was investigated using bioinformatics and systems biology techniques
Maternal High-Fructose Intake Activates Myogenic Program in Fetal Brown Fat and Predisposes Offspring to Diet-Induced Metabolic Dysfunctions in Adulthood
Genome-Wide Analysis of Long Non-coding RNAs Involved in Nodule Senescence in Medicago truncatula
The Roles of Natural Alkaloids and Polyphenols in Lipid Metabolism:Therapeutic Implications and Potential Targets in Metabolic Diseases
Transcriptome Analysis of the Adipose Tissue of Luchuan and Duroc Pigs
A New lncRNA, <i>lnc-LLMA</i> , Regulates Lipid Metabolism in Pig Hepatocytes
Zona pellucida removal by acid Tyrode’s solution affects pre- and post-implantation development and gene expression in mouse embryos
Integrative ATAC-seq and RNA-seq Analysis of the Longissimus Muscle of Luchuan and Duroc Pigs
Integrated Transcriptomic and Translatomic Inquiry of the Role of Betaine on Lipid Metabolic Dysregulation Induced by a High-Fat Diet
Translatome analysis reveals the regulatory role of betaine in high fat diet (HFD)-induced hepatic steatosis
Translatomics Probes Into the Role of Lycopene on Improving Hepatic Steatosis Induced by High-Fat Diet