Kathryn A. Whitehead, Ph.D.
Affiliations: | 2012- | Chemical Engineering | Carnegie Mellon University, Pittsburgh, PA |
Area:
Drug Delivery, BiomaterialsWebsite:
whiteheadlab.cheme.cmu.eduGoogle:
"Kathryn Whitehead"Parents
Sign in to add mentorSamir Mitragotri | grad student | 2007 | UC Santa Barbara | |
(Safe and effective methods for improving the oral delivery of macromolecules.) | ||||
Robert S. Langer | post-doc | 2008-2012 | MIT (Chemistry Tree) |
Children
Sign in to add traineeKatherine C. Fein | grad student | 2015- | Carnegie Mellon |
Christopher M. Knapp | grad student | 2012-2017 | Carnegie Mellon |
Rebecca L. Ball | grad student | 2013-2018 | Carnegie Mellon |
Lisa N. Kasiewicz | grad student | 2013-2018 | Carnegie Mellon |
Khalid A. Hajj | grad student | 2014-2019 | Carnegie Mellon |
Nicholas G. Lamson | grad student | 2014-2019 | Carnegie Mellon |
Kristina P. Friis | post-doc | 2017- | Carnegie Mellon |
Sam T. LoPresti | post-doc | 2018- | Carnegie Mellon |
Jilian R. Melamed | post-doc | 2018- | Carnegie Mellon (Chemistry Tree) |
John P Gleeson | post-doc | 2019- | Carnegie Mellon |
Ryan M. Weiss | post-doc | 2017-2019 | Carnegie Mellon (Chemistry Tree) |
BETA: Related publications
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Publications
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Doerfler R, Yerneni S, LoPresti S, et al. (2025) Maternal milk cell components are uptaken by infant liver macrophages via extracellular vesicle mediated transport. Faseb Journal : Official Publication of the Federation of American Societies For Experimental Biology. 39: e70340 |
Chaudhary N, Kasiewicz LN, Newby AN, et al. (2024) Amine headgroups in ionizable lipids drive immune responses to lipid nanoparticles by binding to the receptors TLR4 and CD1d. Nature Biomedical Engineering |
Joyce P, Allen CJ, Alonso MJ, et al. (2024) A translational framework to DELIVER nanomedicines to the clinic. Nature Nanotechnology |
Petersen DMS, Weiss RM, Hajj KA, et al. (2024) Branched-Tail Lipid Nanoparticles for Intravenous mRNA Delivery to Lung Immune, Endothelial, and Alveolar Cells in Mice. Advanced Healthcare Materials. e2400225 |
Doerfler R, Yerneni S, Newby A, et al. (2024) Characterization and comparison of human and mouse milk cells. Plos One. 19: e0297821 |
Strelkova Petersen DM, Chaudhary N, Arral ML, et al. (2023) The mixing method used to formulate lipid nanoparticles affects mRNA delivery efficacy and organ tropism. European Journal of Pharmaceutics and Biopharmaceutics : Official Journal of Arbeitsgemeinschaft Fur Pharmazeutische Verfahrenstechnik E.V. 192: 126-135 |
Friis KP, Gracin S, Oag S, et al. (2023) Spray dried lipid nanoparticle formulations enable intratracheal delivery of mRNA. Journal of Controlled Release : Official Journal of the Controlled Release Society. 363: 389-401 |
Fein KC, Arral ML, Kim JS, et al. (2023) Placental drug transport and fetal exposure during pregnancy is determined by drug molecular size, chemistry, and conformation. Journal of Controlled Release : Official Journal of the Controlled Release Society |
Melamed JR, Yerneni SS, Arral ML, et al. (2023) Ionizable lipid nanoparticles deliver mRNA to pancreatic β cells via macrophage-mediated gene transfer. Science Advances. 9: eade1444 |
Fein KC, Gleeson JP, Cochran K, et al. (2022) Long-term daily oral administration of intestinal permeation enhancers is safe and effective in mice. Bioengineering & Translational Medicine. 8: e10342 |