Area of research
Molecular Biology · Genetics
Research interest
Research interests include Heat shock proteins research, Glioma Diagnosis and Treatment, Autophagy in Disease and Therapy, and Epigenetics and DNA Methylation.
BRAT1 - a new therapeutic target for glioblastoma
<scp>BAG3</scp> regulates cilia homeostasis of glioblastoma via its <scp>WW</scp> domain
BRAT1 - a new therapeutic target for glioblastoma
Molecular Determinants of Calcitriol Signaling and Sensitivity in Glioma Stem-like Cells
STAT3 Enhances Sensitivity of Glioblastoma to Drug-Induced Autophagy-Dependent Cell Death
CHRDL1 Regulates Stemness in Glioma Stem-like Cells
CHRDL1 Regulates Stemness in Glioma Stem-Like Cells
Autophagy activation, lipotoxicity and lysosomal membrane permeabilization synergize to promote pimozide- and loperamide-induced glioma cell death
Calcitriol Promotes Differentiation of Glioma Stem-Like Cells and Increases Their Susceptibility to Temozolomide
BAG3 is a negative regulator of ciliogenesis in glioblastoma and triple‐negative breast cancer cells
Calcitriol Promotes Differentiation of Glioma Stem-Like Cells and Increases their Susceptibility to Temozolomide
At the Crossroads of Apoptosis and Autophagy: Multiple Roles of the Co-Chaperone BAG3 in Stress and Therapy Resistance of Cancer
Autophagy in Cancer Cell Death
Therapeutic Targeting of Stat3 Using Lipopolyplex Nanoparticle-Formulated siRNA in a Syngeneic Orthotopic Mouse Glioma Model
Concomitant targeting of Hedgehog signaling and MCL-1 synergistically induces cell death in Hedgehog-driven cancer cells
AT 101 induces early mitochondrial dysfunction and HMOX1 (heme oxygenase 1) to trigger mitophagic cell death in glioma cells
BAG3 Overexpression and Cytoprotective Autophagy Mediate Apoptosis Resistance in Chemoresistant Breast Cancer Cells
Interference with the HSF1/HSP70/BAG3 Pathway Primes Glioma Cells to Matrix Detachment and BH3 Mimetic–Induced Apoptosis