Area of research
Genetics · Cancer Research
Research interest
Research interests include Glioma Diagnosis and Treatment, MicroRNA in disease regulation, Brain Metastases and Treatment, and Cancer, Hypoxia, and Metabolism.
Antiretroviral drug therapy does not reduce neuroinflammation in an HIV-1 infection brain organoid model
Three-dimensional regulatory hubs support oncogenic programs in glioblastoma
Bridging the gap between tumor and disease: Innovating cancer and glioma models.
Supplementary Figures from Microenvironment-Driven Dynamic Chromatin Changes in Glioblastoma Recapitulate Early Neural Development at Single-Cell Resolution
Supplementary Data from Microenvironment-Driven Dynamic Chromatin Changes in Glioblastoma Recapitulate Early Neural Development at Single-Cell Resolution
Glioblastoma: Not Just Another Cancer.
Stem cell modeling of nervous system tumors.
DOTATATE PET/MR Imaging Differentiates Secondary-Progressive from de Novo World Health Organization Grade 3 Meningiomas.
Data from Microenvironment-driven dynamic chromatin changes in glioblastoma recapitulate early neural development at single-cell resolution
Supplementary Figures from Microenvironment-driven dynamic chromatin changes in glioblastoma recapitulate early neural development at single-cell resolution
Supplementary Figures from Microenvironment-driven dynamic chromatin changes in glioblastoma recapitulate early neural development at single-cell resolution
Supplementary Data from Microenvironment-driven dynamic chromatin changes in glioblastoma recapitulate early neural development at single-cell resolution
Supplementary Data from Microenvironment-driven dynamic chromatin changes in glioblastoma recapitulate early neural development at single-cell resolution
Tissue factor is a critical regulator of radiation therapy-induced glioblastoma remodeling
Microenvironment-Driven Dynamic Chromatin Changes in Glioblastoma Recapitulate Early Neural Development at Single-Cell Resolution.
Reirradiation for Recurrent Glioblastoma: What We Know and What We Do Not.
Nuclear condensates in YAP1-driven ependymoma.
Supplementary Data from Microenvironment-Driven Dynamic Chromatin Changes in Glioblastoma Recapitulate Early Neural Development at Single-Cell Resolution
Supplementary Figures from Microenvironment-Driven Dynamic Chromatin Changes in Glioblastoma Recapitulate Early Neural Development at Single-Cell Resolution
Supplementary Data from Microenvironment-Driven Dynamic Chromatin Changes in Glioblastoma Recapitulate Early Neural Development at Single-Cell Resolution
Data from Microenvironment-Driven Dynamic Chromatin Changes in Glioblastoma Recapitulate Early Neural Development at Single-Cell Resolution
Data from Microenvironment-Driven Dynamic Chromatin Changes in Glioblastoma Recapitulate Early Neural Development at Single-Cell Resolution
Supplementary Figures from Microenvironment-Driven Dynamic Chromatin Changes in Glioblastoma Recapitulate Early Neural Development at Single-Cell Resolution
Supplementary Data from Microenvironment-Driven Dynamic Chromatin Changes in Glioblastoma Recapitulate Early Neural Development at Single-Cell Resolution
Supplementary Data from Microenvironment-Driven Dynamic Chromatin Changes in Glioblastoma Recapitulate Early Neural Development at Single-Cell Resolution
Data from Microenvironment-Driven Dynamic Chromatin Changes in Glioblastoma Recapitulate Early Neural Development at Single-Cell Resolution
Supplementary Figures from Microenvironment-Driven Dynamic Chromatin Changes in Glioblastoma Recapitulate Early Neural Development at Single-Cell Resolution
Supplementary Figures from Microenvironment-Driven Dynamic Chromatin Changes in Glioblastoma Recapitulate Early Neural Development at Single-Cell Resolution
Diffuse Glioma Heterogeneity and Its Therapeutic Implications
Pluripotent stem cell-derived epithelium misidentified as brain microvascular endothelium requires ETS factors to acquire vascular fate