W. Mark Saltzman
Affiliations: | 1987-1996 | Chemical engineering | Johns Hopkins University, Baltimore, MD |
1996-2002 | Chemical engineering | Cornell University, Ithaca, NY, United States | |
2002- | Biomedical Engineering | Yale University, New Haven, CT |
Website:
https://medicine.yale.edu/profile/mark-saltzman/Google:
"William Mark Saltzman" OR "W. Mark Saltzman"Bio:
Saltzman, William Mark A microstructural approach for modelling diffusion of bioactive macromolecules in porous polymers Thesis (Ph. D.)--Massachusetts Institute of Technology, Harvard-MIT Division of Health Sciences and Technology Program in Medical Engineering and Medical Physics, 1987.
Parents
Sign in to add mentorRobert S. Langer | grad student | 1987 | MIT (Chemistry Tree) | |
(A microstructural approach for modelling diffusion of bioactive macromolecules in porous polymers) |
Children
Sign in to add traineeYongheng Wang | research assistant | 2017-2019 | Engineering (Chemistry Tree) |
Melissa J. Mahoney | grad student | 2000 | Cornell (E-Tree) |
Shu C. Ma | grad student | 2004 | Yale |
Rene G. Williamson | grad student | 2004 | Yale |
Malgorzata S. Cartiera | grad student | 2007 | Yale |
Catherine T. Lo | grad student | 2007 | Yale |
Rachael W. Sirianni | grad student | 2008 | Yale |
Steven M. Jay | grad student | 2009 | Yale |
Andrew J. Sawyer | grad student | 2009 | Yale |
Yen T. Cu | grad student | 2010 | Yale |
Srdan S. Kobsa | grad student | 2012 | Yale |
Rachel J. Fields | grad student | 2013 | Yale |
Benjamin Himes | grad student | 2013 | Yale |
Jillian W. Andrejecsk | grad student | 2014 | Yale |
Nicole A. McNeer | grad student | 2014 | Yale |
Dan Luo | post-doc | 1998-2001 | Cornell |
Richard A Gemeinhart | post-doc | 1999-2001 | Cornell |
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Publications
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Gupta A, Barone C, Quijano E, et al. (2024) Next generation triplex-forming PNAs for site-specific genome editing of the F508del CFTR mutation. Journal of Cystic Fibrosis : Official Journal of the European Cystic Fibrosis Society |
Piotrowski-Daspit AS, Bracaglia LG, Eaton DA, et al. (2024) Enhancing in vivo cell and tissue targeting by modulation of polymer nanoparticles and macrophage decoys. Nature Communications. 15: 4247 |
Oyaghire SN, Quijano E, Perera JDR, et al. (2023) DNA recognition and induced genome modification by a hydroxymethyl-γ tail-clamp peptide nucleic acid. Cell Reports. Physical Science. 4 |
Putman R, Ricciardi AS, Carufe KEW, et al. (2022) Nanoparticle-mediated genome editing in single-cell embryos via peptide nucleic acids. Bioengineering & Translational Medicine. 8: e10458 |
Piotrowski-Daspit AS, Barone C, Lin CY, et al. (2022) In vivo correction of cystic fibrosis mediated by PNA nanoparticles. Science Advances. 8: eabo0522 |
Liu J, Wang X, Chen AT, et al. (2022) ZNF117 regulates glioblastoma stem cell differentiation towards oligodendroglial lineage. Nature Communications. 13: 2196 |
Luks VL, Mandl H, DiRito J, et al. (2022) Surface conjugation of antibodies improves nanoparticle uptake in bronchial epithelial cells. Plos One. 17: e0266218 |
Saha K, Sontheimer EJ, Brooks PJ, et al. (2021) The NIH Somatic Cell Genome Editing program. Nature. 592: 195-204 |
Ullrich SJ, Freedman-Weiss M, Ahle S, et al. (2021) Nanoparticles for Delivery of Agents to Fetal Lungs. Acta Biomaterialia |
DiRito JR, Hosgood SA, Reschke M, et al. (2020) Lysis of cold-storage-induced microvascular obstructions for ex vivo revitalization of marginal human kidneys. American Journal of Transplantation : Official Journal of the American Society of Transplantation and the American Society of Transplant Surgeons |