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/
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"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

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Robert S. Langer grad student 1987 MIT (Chemistry Tree)
 (A microstructural approach for modelling diffusion of bioactive macromolecules in porous polymers)

Children

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Yongheng 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
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