Area of research
Molecular Biology · Genetics
Research interest
Research interests include Glioma Diagnosis and Treatment, RNA Research and Splicing, Single-cell and spatial transcriptomics, and RNA modifications and cancer.
Glioblastoma-secreted C1QL1 orchestrates tumor microtube expansion and neural synaptic pruning to drive malignant synapse formation and recurrence.
The Immunomechanical Checkpoint PYK2 Governs Monocyte-to-Macrophage Differentiation in Pancreatic Cancer.
NOTCH, ERK, and SHH signaling respectively control the fate determination of cortical glia and olfactory bulb interneurons
NOTCH, ERK, and SHH signaling respectively control the fate determination of cortical glia and olfactory bulb interneurons.
DEMINERS enables clinical metagenomics and comparative transcriptomic analysis by increasing throughput and accuracy of nanopore direct RNA sequencing.
Acquired resistance to immunotherapy by physical barriers with cancer cell-expressing collagens in non-small cell lung cancer.
EZH2 loss promotes gastric squamous cell carcinoma.
The Epigenetic Reader PHF23 Is Required for Embryonic Neurogenesis.
FAM20C: A key protein kinase in multiple diseases.
PerturbAtlas: a comprehensive atlas of public genetic perturbation bulk RNA-seq datasets.
Doxifluridine promotes host longevity through bacterial metabolism.
Glioblastoma exploits ATP from leading-edge astrocytes to fuel its infiltrative growth revealed by spatially resolved chimeric analysis.
Data from The Immunomechanical Checkpoint PYK2 Governs Monocyte-to-Macrophage Differentiation in Pancreatic Cancer
Gas1-high quiescent neural stem cells are multipotent and produce oligodendrocytes during aging and after demyelinating injury.
Table s7 from The Immunomechanical Checkpoint PYK2 Governs Monocyte-to-Macrophage Differentiation in Pancreatic Cancer
Table s8 from The Immunomechanical Checkpoint PYK2 Governs Monocyte-to-Macrophage Differentiation in Pancreatic Cancer
Supplementary Figures S1-S26 from The Immunomechanical Checkpoint PYK2 Governs Monocyte-to-Macrophage Differentiation in Pancreatic Cancer
Table s3 from The Immunomechanical Checkpoint PYK2 Governs Monocyte-to-Macrophage Differentiation in Pancreatic Cancer
Table s6 from The Immunomechanical Checkpoint PYK2 Governs Monocyte-to-Macrophage Differentiation in Pancreatic Cancer
Table s5 from The Immunomechanical Checkpoint PYK2 Governs Monocyte-to-Macrophage Differentiation in Pancreatic Cancer
Table s2 from The Immunomechanical Checkpoint PYK2 Governs Monocyte-to-Macrophage Differentiation in Pancreatic Cancer
Table s1 from The Immunomechanical Checkpoint PYK2 Governs Monocyte-to-Macrophage Differentiation in Pancreatic Cancer
Table s4 from The Immunomechanical Checkpoint PYK2 Governs Monocyte-to-Macrophage Differentiation in Pancreatic Cancer
In situ growth of MIL-100(Fe) onto the rice straw-derived biochar for efficient adsorption of gaseous ammonia
Emerging strategies to investigate the biology of early cancer.
Dopaminylation of endothelial TPI1 suppresses ferroptotic angiocrine signals to promote lung regeneration over fibrosis.
Inhibiting endothelial <i>Rhoj</i> blocks profibrotic vascular intussusception and angiocrine factors to sustain lung regeneration
TBC1D23 mediates Golgi-specific LKB1 signaling.
Co-culture models for investigating cellular crosstalk in the glioma microenvironment.
Inhibiting endothelial <i>Rhoj</i> blocks profibrotic vascular intussusception and angiocrine factors to sustain lung regeneration.