Maternal & Child Health Research Institute (MCHRI)


Showing 41-60 of 1,214 Results

  • Anna Chen Arroyo, MD MPH

    Anna Chen Arroyo, MD MPH

    Clinical Associate Professor, Medicine - Pulmonary, Allergy & Critical Care Medicine

    BioAnna Chen Arroyo, MD, MPH, is a board-certified allergy/immunology physician and clinical researcher. She is the section chief of Allergy, Asthma, and Immunodeficiency in the Division of Pulmonary, Allergy and Critical Care Medicine and the medical director of the Allergy, Asthma, and Immunodeficiency Clinic at Stanford Health Care. She specializes in diagnosing and treating allergic conditions, with a focus on severe asthma, maternal asthma, and drug (including chemotherapy) allergies.

    Dr. Arroyo’s clinical research focuses on early life risk factors for allergic disease development and how allergic diseases impact people across the lifespan. She is also interested in studying how allergic diseases affect the Asian American population and hormonal influences on allergic diseases. She has published her original research in peer-reviewed scientific journals, such as The Journal of Allergy and Clinical Immunology: In Practice and The Journal of the American Medical Association (JAMA). She has also presented at national conferences, including annual meetings for the American Thoracic Society and the American Academy of Asthma, Allergy, and Immunology. Dr. Arroyo is a member of the American Academy of Asthma, Allergy, and Immunology, the American Thoracic Society, and the American College of Allergy, Asthma, and Immunology.

  • Steven Artandi, MD, PhD

    Steven Artandi, MD, PhD

    Laurie Kraus Lacob Director of the Stanford Cancer Institute (SCI), 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

    Ann M. Arvin

    Lucile Salter Packard Professor of Pediatrics and Professor of Microbiology and Immunology, Emerita

    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.

  • BRIGHT ASARE-BEDIAKO

    BRIGHT ASARE-BEDIAKO

    Postdoctoral Scholar, Ophthalmology

    BioDr. Asare-Bediako is a Ghanaian-trained Optometrist who started his career as a Teaching/Research Assistant at the Kwame Nkrumah University of Science and Technology, Kumasi, Ghana. He obtained a doctorate degree in Vision Science from the University of Alabama at Birmingham, US, where he worked on animal models of diabetic retinopathy and hematopoiesis in Prof. Maria Grant’s lab. Currently, he is a postdoctoral scholar in Prof. Mary Elizabeth Hartnett’s lab studying retinopathy of prematurity. His current interests lie in understanding mechanisms of angiogenesis in retinopathy of prematurity and diabetic retinopathy.

  • Euan A. Ashley

    Euan A. Ashley

    Roger and Joelle Burnell Professor of Genomics and Precision Health, Arthur L. Bloomfield Professor of Medicine and Professor of Genetics, of Biomedical Data Science and, by courtesy, of Pathology

    Current Research and Scholarly InterestsThe Ashley lab is focused on precision medicine. We develop methods for the interpretation of whole genome sequencing data to improve the diagnosis of genetic disease and to personalize the practice of medicine. At the wet bench, we take advantage of cell systems, transgenic models and microsurgical models of disease to prove causality in biological pathways and find targets for therapeutic development.

  • Ritu Asija

    Ritu Asija

    Clinical Professor, Pediatrics - Cardiology

    BioI specialize in providing cardiac critical care to infants, children and adults with congenital heart disease and heart failure. I am the Associate Director for the Pulmonary Artery Reconstruction Program at Stanford, helping to coordinate comprehensive multidisciplinary care for children with severe pulmonary artery abnormalities and right ventricular dysfunction. I was a Faculty Fellow at the Stanford Center for Biodesign in 2019-2020 and continue to work on development of new technologies for the unmet needs of pediatric patients. I have an interest in physician wellness and completed the Wellness Director course through the WellMD Center at Stanford.

  • Themistocles (Tim) Assimes

    Themistocles (Tim) Assimes

    Associate Professor of Medicine (Cardiovascular Medicine) and, by courtesy, of Epidemiology and Population Health

    Current Research and Scholarly InterestsGenetic Epidemiology, Genetic Determinants of Complex Traits related to Cardiovasular Medicine, Coronary Artery Disease related pathway analyses and integrative genomics, Mendelian randomization studies, risk prediction for major adverse cardiovascular events, cardiovascular medicine related pharmacogenomics, ethnic differences in the determinants of Insulin Mediated Glucose Uptake, pharmacoepidemiology of cardiovascular drugs & outcomes

  • Laura Attardi

    Laura Attardi

    Catharine and Howard Avery Professor of the School of Medicine and Professor 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.

  • Jeffrey Axelrod

    Jeffrey Axelrod

    Professor of Pathology

    Current Research and Scholarly InterestsGenetic and cell biological analyses of signals controlling cell polarity and morphogenesis. Frizzled signaling and cytoskeletal organization.

  • Mohan Babu Budikote Venkatappa

    Mohan Babu Budikote Venkatappa

    Basic Life Research Scientist, Genetics

    Current Research and Scholarly InterestsLongitudinal host-microbial omics profiling and wearables-based monitoring to understand Autism Spectrum Disorder (ASD), its heterogeneity, and predictors of the diverse symptoms that ASD individuals experience.

  • Rosa Bacchetta

    Rosa Bacchetta

    Professor (Research) of Pediatrics (Stem Cell Transplantation)

    Current Research and Scholarly InterestsIn the coming years, I plan to further determine the genetic and immunological basis of diseases with autoimmunity or immune dysregulation in children. I believe that much can still be learned from the in depth mechanistic studies of pediatric autoimmune diseases. Genomic analysis of the patients' samples has become possible which may provide a rapid indication of altered target molecules. I plan to implement robust functional studies to define the consequences of these genetic abnormalities and bridge them to the patient's clinical phenotype.

    Understanding functional consequences of gene mutations in single case/family first and then validating the molecular and cellular defects in other patients with similar phenotypes, will anticipate and complement cellular and gene therapy strategies.

    For further information please visit the Bacchetta Lab website:
    http://med.stanford.edu/bacchettalab.html

  • Laura K. Bachrach

    Laura K. Bachrach

    Professor of Pediatrics (Endocrinology) at the Lucile Salter Packard Children's Hospital, Emerita

    Current Research and Scholarly InterestsPrevention of osteoporosis begins in childhood and adolescence by measures that maximize acquistion of bone mineral during the critical adolescent years. Body mass, calcium nutriture, physical activity, growth and sex steroid hormones, and genetic factors are all thought to be important determinants of bone mass although the relative contribution of each remains controversial.

  • Julie Baker

    Julie Baker

    Professor of Genetics

    Current Research and Scholarly InterestsWe examine how cells communicate and function during fetal development. The work in my laboratory focuses on the establishment of specific cell fates using genomics to decipher interactions between chromatin and developmental signaling cascades, between genomes and rapidly evolving cell types, and between genomic copy number variation and gene expression. In recent years we have focused on the vastly understudied biology of the trophoblast lineage, particularly how this lineage evolved.

  • Justin Nathaniel Baker

    Justin Nathaniel Baker

    Deborah E. Addicott - John A. Kriewall and Elizabeth A. Haehl Family Professor of Pediatrics

    BioAs a Pediatric Oncologist, Palliative Care Physician, and Phase I and End– of– Life Care Clinical Investigator, I am intimately aware of the distress experienced by children with advanced cancer and the ethical and end– of– life/bereavement issues surrounding their disease progression. I currently serve as the Chief of the Division of Quality of Life and Pediatric Palliative Care here at Stanford, as well as the Director of the Quality of Life for All (QoLA) Program. Additionally, I serve as the Associate Chief Quality Officer for Patient Experience and Holistic Care. In my past career at St Jude, I served as the Director of our large Pediatric Hematology/Oncology Fellowship Program for more than a decade. My research interests include ethical considerations surrounding enrollment in Phase I clinical trials, AYA palliative oncology care, end– of– life decision making, grief and bereavement, integrating palliative care into the ongoing care of children with cancer as well as patient– reported outcomes and pain and symptom control in the context of pediatric oncology care. I have received significant extramural funding for my research, and I have participated in dozens of studies related to pediatric palliative care. I have authored ~300 academic works on a broad array of palliative care subjects. In sum, I am a recognized global expert and leader in the field of Pediatric Palliative Care.

  • Karthik Balakrishnan, MD, MPH, FAAP, FACS

    Karthik Balakrishnan, MD, MPH, FAAP, FACS

    Professor of Otolaryngology - Head & Neck Surgery (OHNS) and, by courtesy, of Pediatrics

    Current Research and Scholarly InterestsDr. Balakrishnan's research focuses on innovative ways to improve and standardize treatments and measure outcomes in complex pediatric airway and aerodigestive conditions , as well as ways to reduce treatment costs and medical errors. By improving outcomes and reducing costs, he aims to improve the value of care, while also optimizing patient and caregiver experience during the care process.

  • Malathi Balasundaram

    Malathi Balasundaram

    Clinical Professor, Pediatrics - Neonatology

    Current Research and Scholarly InterestsFamily-centered Care in the NICU

  • Stephanie Balters

    Stephanie Balters

    Instructor, Psychiatry and Behavioral Sciences - Interdisciplinary Brain Sciences

    BioDr. Stephanie Balters is a neuroscientist, educator, and innovator dedicated to advancing team flourishing and excellence. She directs the Empowerment Neuroscience Lab in Stanford Medicine’s Department of Psychiatry & Behavioral Sciences, serves as Director of Research at Stanford’s Center for Compassion and Altruism Research and Education (CCARE), and is Scientific Lead of the Stanford Belonging Project. Her research employs portable dual-brain neuroimaging (fNIRS hyperscanning) and advanced computational modeling to elucidate the neural and inter-brain signatures of high-impact, purpose-aligned teams. She also develops and tests targeted, evidence-based interventions that measurably strengthen connection, collaboration, and performance. Partnering across Stanford Medicine, the Graduate School of Business, and Stanford Athletics, Dr. Balters translates biomarkers of human connection into simple, repeatable practices that leaders can train and track over time—turning the neuroscience of connection into a practical engine for culture change. She also leads team-innovation workshops at Stanford, creating high-trust spaces that foster authenticity, alignment, and bold, measurable execution. Beyond academia, she serves as a Human Factors Specialist at NATO, converting neuroscience insights into actionable strategies for resilient, high-performing teams.

  • Jennifer K. Bando

    Jennifer K. Bando

    Assistant Professor of Microbiology and Immunology

    Current Research and Scholarly InterestsMucosal immunology, innate lymphocytes

  • Zhenan Bao

    Zhenan Bao

    K. K. Lee Professor, Senior Fellow at the Precourt Institute for Energy and Professor, by courtesy, of Materials Science and Engineering, of Chemistry, and of Bioengineering

    BioZhenan Bao joined Stanford University in 2004. She is currently a K.K. Lee Professor in Chemical Engineering, and with courtesy appointments in Chemistry, Bioengineering and Material Science and Engineering. She was the Department Chair of Chemical Engineering from 2018-2022 and in 2025. She founded the Stanford Wearable Electronics Initiative (eWEAR) and is the current faculty director. Bao received her Ph.D. degree in Chemistry from The University of Chicago in 1995 and joined Bell Labs, Lucent Technologies. She became a Distinguished Member of Technical Staff in 2001. Professor Bao currently has more than 800 refereed publications and more than 80 US patents with a Google Scholar H-index 237.

    Bao is a member of the US National Academy of Sciences, National Academy of Engineering, the American Academy of Arts and Sciences and the National Academy of Inventors. Bao was elected a foreign member of the Chinese Academy of Science in 2021. She is a Fellow of AAAS, ACS, MRS, SPIE, ACS POLY and ACS PMSE.

    Bao is a member of the Board of Directors for the Camille and Dreyfus Foundation from 2022. She served as a member of Executive Board of Directors for the Materials Research Society and Executive Committee Member for the Polymer Materials Science and Engineering division of the American Chemical Society. She co-founded C3 Nano Co. (acquired by Du Pont) and PyrAmes, which have produced products used in commercial smartphones and hospitals, respectively. Multiple inventions from her lab have been licensed and served as foundational technologies for several additional start-ups.

    Bao was a recipient of the VinFuture Prize Female Innovator 2022, ACS Award of Chemistry of Materials 2022, MRS Mid-Career Award in 2021, AICHE Alpha Chi Sigma Award 2021, ACS Central Science Disruptor and Innovator Prize in 2020, ACS Gibbs Medal in 2020, the Wilhelm Exner Medal from the Austrian Federal Minister of Science in 2018, the L'Oreal UNESCO Women in Science Award North America Laureate in 2017. She was awarded the ACS Applied Polymer Science Award in 2017, ACS Creative Polymer Chemistry Award in 2013 ACS Cope Scholar Award in 2011. She is a recipient of the Royal Society of Chemistry Beilby Medal and Prize in 2009, IUPAC Creativity in Applied Polymer Science Prize in 2008.

    In Stanford, Bao has pioneered molecular design concepts and fabrication processes to advance the scope and applications of skin-inspired electronics. Her group discovered nano confinement effect of conjugated polymers in polymer blends, which established the fundamental foundation for skin-inspired electronic materials and devices. Her work has resulted in new materials and device solutions for soft robotics, wearable and implantable electronics for precision health, precision mental health and advanced tools for understanding neuroscience and treatment of neurodegenerative diseases. Building on chemical insights, her group has developed foundational materials and devices that enabled a new generation of skin-inspired soft electronics. They provide unprecedented opportunities for understanding human health through developing monitoring, diagnosis and treatment tools. Some examples include: a neuromorphic e-skin that can sense force and temperature and directly communicate with brain, a wireless wound healing patch, a soft NeuroString for simultaneous neurochemical monitoring in the brain and gut, soft high-density electrophysiological recording array, a meta-learned skin sensor for detailed body movements, a reconfigurable self-healing electronic skin.