David J. Mooney, Ph.D.
Affiliations: | 1994-2004 | Biologic & Materials Science | University of Michigan, Ann Arbor, Ann Arbor, MI |
2004- | Bioengineering | Harvard University, Cambridge, MA, United States |
Area:
Angiogenesis, drug delivery, mechanotransduction, immune therapies and cancer, musculoskeletal tissue engineering, new biomaterialsWebsite:
https://wyss.harvard.edu/team/core-faculty/david-mooney/Google:
"David James Mooney"Bio:
http://www.seas.harvard.edu/mooneylab/
http://www.seas.harvard.edu/directory/mooneyd
http://www.nae.edu/MembersSection/Directory20412/31131.aspx?layoutChange=Print,LowGraphics
Mooney, David James, Control of hepatocyte morphology and function by the extracellular matrix, Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, 1992.
Mean distance: 7.81 | S | N | B | C | P |
Cross-listing: MichiganTree
Parents
Sign in to add mentorRobert S. Langer | grad student | 1992 | MIT | |
(Control of hepatocyte morphology and function by the extracellular matrix) | ||||
Joseph P. Vacanti | X | 1992-1994 | Harvard Medical School (Pediatric Surgery Tree) |
Children
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Publications
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Mooney D, Dankers P, Roche E, et al. (2024) Engineering Active Materials for Biomedical Applications. Advanced Materials (Deerfield Beach, Fla.). e2412651 |
Kumbhojkar N, Prakash S, Fukuta T, et al. (2024) Neutrophils bearing adhesive polymer micropatches as a drug-free cancer immunotherapy. Nature Biomedical Engineering |
Clift CL, Blaser MC, Gerrits W, et al. (2024) Intracellular proteomics and extracellular vesiculomics as a metric of disease recapitulation in 3D-bioprinted aortic valve arrays. Science Advances. 10: eadj9793 |
Mendez K, Whyte W, Freedman BR, et al. (2023) Mechanoresponsive drug release from a flexible, tissue-adherent, hybrid hydrogel actuator. Advanced Materials (Deerfield Beach, Fla.). e2303301 |
Zhang DKY, Adu-Berchie K, Iyer S, et al. (2023) Enhancing CAR-T cell functionality in a patient-specific manner. Nature Communications. 14: 506 |
Wu DT, Diba M, Yang S, et al. (2022) Hydrogel viscoelasticity modulates migration and fusion of mesenchymal stem cell spheroids. Bioengineering & Translational Medicine. 8: e10464 |
Kerr MD, McBride DA, Johnson WT, et al. (2022) Immune-responsive biodegradable scaffolds for enhancing neutrophil regeneration. Bioengineering & Translational Medicine. 8: e10309 |
Liu Y, Adu-Berchie K, Brockman JM, et al. (2022) Cytokine conjugation to enhance T cell therapy. Proceedings of the National Academy of Sciences of the United States of America. 120: e2213222120 |
Elosegui-Artola A, Gupta A, Najibi AJ, et al. (2022) Matrix viscoelasticity controls spatiotemporal tissue organization. Nature Materials |
Nam S, Seo BR, Najibi AJ, et al. (2022) Active tissue adhesive activates mechanosensors and prevents muscle atrophy. Nature Materials |