School of Medicine
Showing 1-19 of 19 Results
Saul A. Rosenberg, MD, Professor of Lymphoma
Current Research and Scholarly InterestsClinical investigation in Hodgkin's disease, non-Hodgkin's Lymphomas and cutaneous lymphomas. Experimental therapeutics with novel chemotherapy and biologically targeted therapies.
The research program is highly collaborative with radiation oncology, industry, pathology and dermatology.
Clinical Assistant Professor, Pediatrics - Hematology & Oncology
Current Research and Scholarly InterestsI am interested in the prevention and management of infectious complication in pediatric oncology patients. I am also interested in developing a protocol for the management of low risk patients with fever and neutropenia.
Associate Professor of Pediatrics (Stem Cell Transplantation) at the Lucile Salter Packard Children's Hospital
Current Research and Scholarly InterestsHematopoietic Stem cell biology-created a SCID mouse model to study engraftment of cord blood derived hematopoietic cells and use of this model to develop gene transfer technology for Fanconi anemia.
Clinical research interests are to develop new protocols to reduce graft vs host disease,treatment of viral infections post transplant and use of manipulated HSC graft in patients who receive mismatched donor transplants.
Ash A. Alizadeh, MD/PhD
Associate Professor of Medicine (Oncology)
Current Research and Scholarly InterestsMy research is focused on attaining a better understanding of the initiation, maintenance, and progression of tumors, and their response to current therapies toward improving future treatment strategies. In this effort, I employ tools from functional genomics, computational biology, molecular genetics, and mouse models.
Clinically, I specialize in the care of patients with lymphomas, working on translating our findings in prospective cancer clinical trials.
Russ B. Altman
Kenneth Fong Professor and Professor of Bioengineering, of Genetics, of Medicine (General Medical Discipline), of Biomedical Data Science and, by courtesy, of Computer Science
Current Research and Scholarly InterestsI refer you to my web page for detailed list of interests, projects and publications. In addition to pressing the link here, you can search "Russ Altman" on http://www.google.com/
Justin P. Annes M.D., Ph.D.
Associate Professor of Medicine (Endocrinology)
Current Research and Scholarly InterestsThe ANNES LABORATORY of Molecular Endocrinology: Leveraging Chemical Biology to Treat Endocrine Disorders
The prevalence of diabetes is increasing at a staggering rate. By the year 2050 an astounding 25% of Americans will be diabetic. The goal of my research is to uncover therapeutic strategies to stymie the ensuing diabetes epidemic. To achieve this goal we have developed a variety of innovate experimental approaches to uncover novel approaches to curing diabetes.
(1) Beta-Cell Regeneration: Diabetes results from either an absolute or relative deficiency in insulin production. Our therapeutic strategy is to stimulate the regeneration of insulin-producing beta-cells to enhance an individual’s insulin secretion capacity. We have developed a unique high-throughput chemical screening platform which we use to identify small molecules that promote beta-cell growth. This work has led to the identification of key molecular pathways (therapeutic targets) and candidate drugs that promote the growth and regeneration of islet beta-cells. Our goal is to utilize these discoveries to treat and prevent diabetes.
(2) The Metabolic Syndrome: A major cause of the diabetes epidemic is the rise in obesity which leads to a cluster of diabetes- and cardiovascular disease-related metabolic abnormalities that shorten life expectancy. These physiologic aberrations are collectively termed the Metabolic Syndrome (MS). My laboratory has developed an original in vivo screening platform t to identify novel hormones that influence the behaviors (excess caloric consumption, deficient exercise and disrupted sleep-wake cycles) and the metabolic abnormalities caused by obesity. We aim to manipulate these hormone levels to prevent the development and detrimental consequences of the MS.
HEREDIATY PARAGAGLIOMA SYNDROME
The Hereditary Paraganglioma Syndrome (hPGL) is a rare genetic cancer syndrome that is most commonly caused by a defect in mitochondrial metabolism. Our goal is to understand how altered cellular metabolism leads to the development of cancer. Although hPGL is uncommon, it serves as an excellent model for the abnormal metabolic behavior displayed by nearly all cancers. Our goal is to develop novel therapeutic strategies that target the abnormal behavior of cancer cells. In the laboratory we have developed hPGL mouse models and use high throughput chemical screening to identify the therapeutic susceptibilities that result from the abnormal metabolic behavior of cancer cells.
As a physician scientist trained in clinical genetics I have developed expertise in hereditary endocrine disorders and devoted my efforts to treating families affected by the hPGL syndrome. By leveraging our laboratory expertise in the hPGL syndrome, our care for individuals who have inherited the hPGL syndrome is at the forefront of medicine. Our goal is to translate our laboratory discoveries to the treatment of affected families.
Associate Professor of Medicine (Blood and Marrow Transplantation) at the Stanford University Medical Center
Current Research and Scholarly InterestsResearch interest in utilizing post-transplant adoptive cellular immunotherapy to reduce GVHD and relapse in patients with high risk hematologic malignancies.
Director, Stanford Cancer Institute, Jerome and Daisy Low Gilbert Professor and Professor of Biochemistry
Current Research and Scholarly InterestsTelomeres are nucleoprotein complexes that protect chromosome ends and shorten with cell division and aging. We are interested in how telomere shortening influences cancer, stem cell function, aging and human disease. Telomerase is a reverse transcriptase that synthesizes telomere repeats and is expressed in stem cells and in cancer. We have found that telomerase also regulates stem cells and we are pursuing the function of telomerase through diverse genetic and biochemical approaches.
Ann M. Arvin
Lucile Salter Packard Professor of Pediatrics and Professor of Microbiology and ImmunologyOn Partial Leave from 09/01/2019 To 08/31/2021
Current Research and Scholarly InterestsOur laboratory investigates the pathogenesis of varicella zoster virus (VZV) infection, focusing on the functional roles of particular viral gene products in pathogenesis and virus-cell interactions in differentiated human cells in humans and in Scid-hu mouse models of VZV cell tropisms in vivo, and the immunobiology of VZV infections.
Associate Professor of Medicine (Primary Care and Population Health) and of Anesthesiology, Perioperative and Pain Medicine at the Stanford University Medical Center
BioDr. Rebecca A. Aslakson is an Associate Professor at Stanford University with appointments in both the Department of Primary Care & Population Health in the Palliative Care Section and the Department of Anesthesiology, Perioperative and Pain Medicine where she serves as Division Chief of Critical Care Anesthesia. With a Summa Cum Laude B.A. from Washington University in St. Louis, an MD from Harvard Medical School–MIT, and an MSci degree with Distinction from the University of Ulster in Northern Ireland, Dr. Aslakson completed anesthesia residency at Massachusetts General Hospital and surgical critical care fellowship at The Johns Hopkins Hospital, where she was on faculty from 2008-2017. In 2013, Dr. Aslakson obtained her PhD in Clinical Investigations from The Johns Hopkins Bloomberg School of Public Health with her dissertation concerning integration of palliative care in intensive care units. Triple boarded in anesthesia, surgical critical care, and palliative medicine, Dr. Aslakson is an active researcher and clinician; her goal is to improve delivery of effective and equitable palliative care, particularly to perioperative and critically ill populations. She has published over 80 peer-reviewed papers, invited editorials, and book chapters and received competitive funding from funders such as AHRQ, PCORI, the Foundation for Anesthesia Education and Research, and the National Palliative Care Research Society. Dr. Aslakson serves on national committees for professional societies including the American Academy of Hospice and Palliative Medicine (AAHPM), the American Society of Anesthesiologists (ASA), and the Society of Critical Care Medicine (SCCM). Dr. Aslakson has received national awards including the 2015 AAHPM Early Career Investigator Award and the 2014 ASA Presidential Scholar Award. Dr. Aslakson clinically attends at the Stanford University Medical Center in the M4 and E2 Intensive Care Units and on the inpatient palliative care clinical service. She lives in Palo Alto, CA with her husband and two sons.
Ph.D. Student in Cancer Biology, admitted Autumn 2014
Student Employee, Center for Teaching and Learning
Current Research and Scholarly InterestsAs part of my graduate work I developed ImmunoGlobe, a map of the immune intercellular interactome that describes how immune cells and immune system components interact to drive immune responses. By structuring our knowledge of immune interactions into a directional graph, ImmunoGlobe makes it easy to explore the relationships between components of the immune system. An interactive version of the network is available online at immunoglobe.org.
Professor of Radiation Oncology (Radiation and Cancer Biology) and of Genetics
Current Research and Scholarly InterestsOur 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.
Professor of Pathology
Current Research and Scholarly InterestsGenetic and cell biological analyses of signals controlling cell polarity and morphogenesis. Frizzled signaling and cytoskeletal organization.