Stanford University
Showing 12,471-12,480 of 13,135 Results
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Tracey Woodruff
Professor of Epidemiology and Population Health and Senior Fellow at the Woods Institute for the Environment
BioMy research is devoted to identify and addressing environmental pollution exposures - petrochemicals, pesticides, plastics and other toxic contaminants - and the impacts on health. I focus on filling critical gaps in knowledge that will result in structural changes that improve health and reduce inequities. I collaborate across disciplines to create systemic solutions that integrate environmental health, public policy, and healthcare for significant public health advancements. My research expertise encompasses all aspects of understanding and characterizing environmental chemical exposures and their health impacts, especially on vulnerable and susceptible populations due to life stage, such as pregnant women and children, and demographics, such as poverty and race/ethnicity. I led multidisciplinary investigations to: identify and measure human exposures to environmental contaminants via modeling and biomonitoring including advanced methods for nontargeted analysis; identify biological mechanisms using in vitro and in vivo systems; assess the impact of multiple chemical exposures on pregnancy and child outcomes via epidemiology studies; and develop and apply methods for translating research findings into improved clinical care and public policy.
I have extensive expertise and experience in translating science into clinical and policy decision-making. I led the development of the Navigation Guide Systematic Review Methodology, the first systematic review method for environmental health science, developed in collaboration with multiple collaborators from international, national, and state governments, community groups, and the clinical community, integrates best practices from clinical medicine and environmental health evaluation. I continue to collaborate on systematic reviews including pesticides and Parkinson’s, and methodological improvements. I am widely recognized for my expertise in the use of science in decision making for environmental chemicals. I’ve been invited to testify before Congress and the State of California multiple times and I lead our Science Action Network that engages in bring best available science to regulatory decision-making. I have also collaborated with other faculty on empirical research to identify how industries adversely influence the scientific process.
Before Stanford, I was a Professor at UCSF and Director of the Program on Reproductive Health and the Environment. I now with UCSF co-lead the UCSF/Stanford Environmental Research and Translation for Health Center funded by a NIEHS P30 mechanism. Prior to UCSF I served for over 10 years in the Office of Policy at the US Environmental Protection Agency. -
Emily Woods
Postdoctoral Scholar, Pathology
Current Research and Scholarly Interestsdevelopment of activity-based probes for specific diagnosis and treatment of Staphylococcus aureus infections and for detection of bacterial ear infections (otitis media)
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Mulate Zerihun Workeneh
Postdoctoral Scholar, Critical Care
BioDr. Mulate Zerihun Workeneh is a Postdoctoral Scholar in Dr. Bereketeab Haileselassie’s laboratory in the Department of Pediatrics at Stanford University School of Medicine. He earned a Ph.D. in Medical Sciences from the Azrieli Faculty of Medicine at Bar-Ilan University, Israel, where he developed peptide therapeutics that target mitochondrial protein-protein interactions involved in cardiovascular disease. Dr. Workeneh’s research uses medicinal chemistry, chemical biology, peptide engineering, computational modeling and mitochondrial biology to understand how the disease occurs and to develop new ways to treat it. During his doctoral training, he designed and evaluated novel linear and macrocyclic peptide inhibitors that alter mitochondrial dynamics to mitigate mitochondrial dysfunction and cardiovascular injury. His work at Stanford is focused on defining the role of mitochondrial dynamics in endothelial dysfunction in sepsis and multiple organ dysfunction syndrome (MODS). He is working to develop peptide-based therapeutics that maintain mitochondrial function, improve vascular health and prevent organ failure in critically ill patients by integrating approaches in chemical biology, molecular and cellular biology, and translational drug discovery. Dr. Workeneh has publications in leading medicinal chemistry, pharmacology, and mitochondrial biology journals and is an inventor on patents related to mitochondrial protein-protein interaction inhibitors. His goal is to translate advances in mitochondrial biology into first-in-class therapeutics for cardiovascular disease, sepsis, and other disorders linked to mitochondrial dysfunction. He is excited to work across disciplines at Stanford to help push biomedical research forward.