Area of research
Physiology · Oncology
Research interest
Research interests include Spaceflight effects on biology, CAR-T cell therapy research, High Altitude and Hypoxia, and Adipose Tissue and Metabolism.
High-throughput sequencing to analyze changes in the human scalp microbiome during the use of a shampoo
A fused hybrid enzyme of 8-hydroxygeraniol oxidoreductase (8HGO) from Gardenia jasminoides and iridoid synthase (ISY) from Catharanthus roseus significantly enhances nepetalactol and iridoid production
Investigation of the fermentation filtrate from soapberry (Sapindus mukorossi Gaertn.) pericarp on improving the microbial diversity and composition of the human scalp
Endothelial PHACTR1 Promotes Endothelial Activation and Atherosclerosis by Repressing PPARγ Activity Under Disturbed Flow in Mice
Effects of triglyceride glucose (TyG) and TyG-body mass index on sex-based differences in the early-onset heart failure of ST-elevation myocardial infarction
FUNDC1/USP15/Drp1 ameliorated TNF-α–induced pulmonary artery endothelial cell proliferation by regulating mitochondrial dynamics
The role of ferroptosis in endothelial cell dysfunction
Identification and functional characterization of three iridoid synthases in Gardenia jasminoides
Volatile metabolic profiling and functional characterization of four terpene synthases reveal terpenoid diversity in different tissues of Chrysanthemum indicum L
Distribution survey, phytochemical and transcriptome analysis to identify candidate genes involved in biosynthesis of functional components in Zanthoxylum nitidum
Checkpoint Blockade Reverses Anergy in IL-13Rα2 Humanized scFv-Based CAR T Cells to Treat Murine and Canine Gliomas
Overexpression of Artemisia annua Cinnamyl Alcohol Dehydrogenase Increases Lignin and Coumarin and Reduces Artemisinin and Other Sesquiterpenes
Comparative Transcriptomics Analysis for Gene Mining and Identification of a Cinnamyl Alcohol Dehydrogenase Involved in Methyleugenol Biosynthesis from Asarum sieboldii Miq.
Combinatorial IL13Rα2 chimeric antigen receptor-T cells plus checkpoint blockade to treat solid tumors in murine and canine models.
Dynamic Regulation of the Cerebral Cavernous Malformation Pathway Controls Vascular Stability and Growth