Area of research
Oncology · Molecular Biology
Research interest
Research interests include Pancreatic and Hepatic Oncology Research, DNA Repair Mechanisms, Cancer Genomics and Diagnostics, and Cancer-related Molecular Pathways.
Simultaneous <i>Nbs1</i> and <i>p53</i> inactivation in neural progenitors triggers high‐grade gliomas
Telomerase and Pluripotency Factors Jointly Regulate Stemness in Pancreatic Cancer Stem Cells
RINT1 Regulates SUMOylation and the DNA Damage Response to Preserve Cellular Homeostasis in Pancreatic Cancer
PDX-derived organoids model in vivo drug response and secrete biomarkers
Synergistic targeting and resistance to PARP inhibition in DNA damage repair-deficient pancreatic cancer
Pancreatic Ductal Adenocarcinoma (PDAC) Organoids: The Shining Light at the End of the Tunnel for Drug Response Prediction and Personalized Medicine
ATRIP protects progenitor cells against DNA damage in vivo
Progenitor death drives retinal dysplasia and neuronal degeneration in a mouse model of ATRIP-Seckel syndrome
Correction: ATRIP protects progenitor cells against DNA damage in vivo
ATM Deficiency Generating Genomic Instability Sensitizes Pancreatic Ductal Adenocarcinoma Cells to Therapy-Induced DNA Damage
RINT1 functions as a multitasking protein at the crossroads between genomic stability, ER homeostasis, and autophagy
Epidermal <i>Nbn</i> deletion causes premature hair loss and a phenotype resembling psoriasiform dermatitis
Neurofibromin specific antibody differentiates malignant peripheral nerve sheath tumors (MPNST) from other spindle cell neoplasms
Nbn and Atm Cooperate in a Tissue and Developmental Stage-Specific Manner to Prevent Double Strand Breaks and Apoptosis in Developing Brain and Eye
Correction: Nbn and Atm Cooperate in a Tissue and Developmental Stage-Specific Manner to Prevent Double Strand Breaks and Apoptosis in Developing Brain and Eye