School of Medicine
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Professor of Radiation Oncology (Radiation Biology) and of Genetics
Current Research and Scholarly Interests Our research is aimed at defining the pathways of p53-mediated apoptosis and tumor suppression, using a combination of biochemical, cell biological, and mouse genetic approaches. Our strategy is to start by generating hypotheses about p53 mechanisms of action using primary mouse embryo fibroblasts (MEFs), and then to test them using gene targeting technology in the mouse.
Postdoctoral Research fellow, Radiation Biology
Current Research and Scholarly Interests Studying the role of the p53 tumor suppressor in embryonic development
Professor of Radiation Oncology, Emeritus
Current Research and Scholarly Interests We seek to understand the mechanisms responsible for the resistance of cancers to treatment and to develop strategies to overcome these resistances. We are using molecular and cellular techniques and mouse models to potentiate the activity of radiation on tumors by inhibiting the bone marrow rescue of the tumor vasculature following therapy.
Accountant, Radiation Biology
Current Role at Stanford Financial Specialist
division of Cancer Biology
CCSR South Room 1255
Administrative Associate, Radiation Biology
Current Role at Stanford Admin Support for Dr. Amato Giaccia
Amato J. Giaccia
Jack, Lulu and Sam Willson Professor, Professor of Radiation Oncology, and by courtesy, of Obstetrics and Gynecology and of Surgery
Current Research and Scholarly Interests During the last five years, we have identified several small molecules that kill VHL deficient renal cancer cells through a synthetic lethal screening approach. Another major interest of my laboratory is in identifying hypoxia-induced genes involved in invasion and metastases. We are also investigating how hypoxia regulates gene expression epigenetically.