Area of research
Genetics · Cellular and Molecular Neuroscience
Research interest
Research interests include Genetic and Kidney Cyst Diseases, Neuroscience and Neuropharmacology Research, Glioma Diagnosis and Treatment, and Microtubule and mitosis dynamics.
Breaking down glioma primary cilia disassembly.
KR158 spheres harboring slow-cycling cells recapitulate GBM features in an immunocompetent system
Superenhancer activation of KLHDC8A drives glioma ciliation and hedgehog signaling
CCR2 inhibition reduces tumor myeloid cells and unmasks a checkpoint inhibitor effect to slow progression of resistant murine gliomas
Emerging Roles of Primary Cilia in Glioma
Personalized Tumor RNA Loaded Lipid-Nanoparticles Prime the Systemic and Intratumoral Milieu for Response to Cancer Immunotherapy
Glioma cell proliferation is enhanced in the presence of tumor-derived cilia vesicles
STEM-09. TREATMENT-RESISTANT SLOW-CYCLING CELLS SUPPORT METABOLIC HETEROGENEITY AND ADAPTABILITY IN GLIOBLASTOMA
PCM1 Depletion Inhibits Glioblastoma Cell Ciliogenesis and Increases Cell Death and Sensitivity to Temozolomide
Disruption of KIF3A in patient-derived glioblastoma cells: effects on ciliogenesis, hedgehog sensitivity, and tumorigenesis
CBIO-20. METABOLIC VULNERABILITY REVEALED IN SLOW-CYCLING GLIOMA STEM CELLS
CBIO-09ENHANCED MITOCHONDRIAL RESPIRATION IN SLOW-CYCLING GLIOMA STEM CELLS
CB-08 * KIF3A IS ESSENTIAL FOR CILIOGENESIS, CILIA FUNCTION AND PROMOTES GLIOBLASTOMA PROGRESSION
Abstract 4906: ZEB1 maintains self-renewal, invasion and chemoresistance of glioblastoma stem cells.