Area of research
Molecular Biology · Oncology
Research interest
Research interests include Single-cell and spatial transcriptomics, Pluripotent Stem Cells Research, Pancreatic and Hepatic Oncology Research, and CRISPR and Genetic Engineering.
Advancing biological understanding of cellular senescence with computational multiomics
Immunosuppressive Tumor Microenvironment of Osteosarcoma
MorPhiC Consortium: towards functional characterization of all human genes
SenNet recommendations for detecting senescent cells in different tissues
Advances and prospects for the Human BioMolecular Atlas Program (HuBMAP)
NIH SenNet Consortium to map senescent cells throughout the human lifespan to understand physiological health
A path to translation: How 3D patient tumor avatars enable next generation precision oncology
Transcriptional profiling of macrophages in situ in metastatic melanoma reveals localization-dependent phenotypes and function
Mapping systemic lupus erythematosus heterogeneity at the single-cell level
Single-cell analyses reveal increased intratumoral heterogeneity after the onset of therapy resistance in small-cell lung cancer
Assessment of established techniques to determine developmental and malignant potential of human pluripotent stem cells
Reference component analysis of single-cell transcriptomes elucidates cellular heterogeneity in human colorectal tumors
The role of Cdx2 as a lineage specific transcriptional repressor for pluripotent network during the first developmental cell lineage segregation
Single-cell multimodal profiling reveals cellular epigenetic heterogeneity
Tumor-derived circulating endothelial cell clusters in colorectal cancer
Identification of cDC1- and cDC2-committed DC progenitors reveals early lineage priming at the common DC progenitor stage in the bone marrow
Bifurcation analysis of single-cell gene expression data reveals epigenetic landscape
Oct4 Cell-Autonomously Promotes Primitive Endoderm Development in the Mouse Blastocyst
Oct4 switches partnering from Sox2 to Sox17 to reinterpret the enhancer code and specify endoderm
Glycine Decarboxylase Activity Drives Non-Small Cell Lung Cancer Tumor-Initiating Cells and Tumorigenesis