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Donald M. Engelman

Affiliations: 
Molecular Biophysics and Biochemistry Yale University, New Haven, CT 
Area:
Structural biology
Website:
http://www.yale.edu/engelman/DME.html
Google:
"Donald M. Engelman"
Bio:

http://www.nasonline.org/member-directory/members/55995.html
http://medicine.yale.edu/mbb/faculty/donald_engelman.profile
http://yufind.library.yale.edu/yufind/Record/9847430

Cross-listing: Chemistry Tree

Parents

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Harold J. Morowitz grad student 1967 Yale (Physics Tree)
 (Solubilization and Aggregation Properties of Membrane Components from Mycoplasma Laidlawii)
Walther Stoeckenius post-doc 1968 UCSF (Chemistry Tree)
John T. Randall post-doc 1968-1970 King's College (Physics Tree)
Maurice HF Wilkins post-doc 1968-1970 King's College

Children

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Mark A. Lemmon grad student Yale (Chemistry Tree)
Michael Laughrea grad student 1974-1978 (Cell Biology Tree)
Lillian E. Fisher grad student 2000 Yale (Chemistry Tree)
Fang X. Zhou grad student 2000 Yale (Chemistry Tree)
Alessandro Senes grad student 2001 Yale (Chemistry Tree)
Gerald K. Sonoda grad student 2001 Yale (Chemistry Tree)
Jessica P. Dawson grad student 2003 Yale (Chemistry Tree)
Allison D. Dupuy grad student 2007 Yale (Chemistry Tree)
Erin E. Matthews grad student 2007 Yale (Chemistry Tree)
Justin Fendos grad student 2011 Yale (Chemistry Tree)
Jill Trewhella post-doc 1984 Yale (Chemistry Tree)
Karen Gibson Fleming post-doc 2000 Yale (Chemistry Tree)
Damien Thévenin post-doc 2006-2011 Yale (Chemistry Tree)
Ming An post-doc 2007-2011 Yale (Chemistry Tree)
BETA: Related publications

Publications

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Gayle S, Aiello R, Leelatian N, et al. (2021) Correction to 'Tumor-selective, antigen-independent delivery of a pH sensitive peptide-topoisomerase inhibitor conjugate suppresses tumor growth without systemic toxicity'. Nar Cancer. 3: zcab047
Svoronos AA, Campbell SG, Engelman DM. (2021) MicroRNA function can be reversed by altering target gene expression levels. Iscience. 24: 103208
Gayle S, Aiello R, Leelatian N, et al. (2021) Tumor-selective, antigen-independent delivery of a pH sensitive peptide-topoisomerase inhibitor conjugate suppresses tumor growth without systemic toxicity. Nar Cancer. 3: zcab021
Svoronos AA, Engelman DM. (2021) Pharmacokinetic modeling reveals parameters that govern tumor targeting and delivery by a pH-Low Insertion Peptide (pHLIP). Proceedings of the National Academy of Sciences of the United States of America. 118
Crawford T, Moshnikova A, Roles S, et al. (2020) pHLIP ICG for delineation of tumors and blood flow during fluorescence-guided surgery. Scientific Reports. 10: 18356
Liu W, Deacon J, Yan H, et al. (2020) Tumor-targeted pH-low insertion peptide delivery of theranostic gadolinium nanoparticles for image-guided nanoparticle-enhanced radiation therapy. Translational Oncology. 13: 100839
Reshetnyak YK, Moshnikova A, Andreev OA, et al. (2020) Targeting Acidic Diseased Tissues by pH-Triggered Membrane-Associated Peptide Folding. Frontiers in Bioengineering and Biotechnology. 8: 335
Slaybaugh G, Weerakkody D, Engelman DM, et al. (2020) Kinetics of pHLIP peptide insertion into and exit from a membrane. Proceedings of the National Academy of Sciences of the United States of America
Kaplan AR, Pham H, Liu Y, et al. (2020) Ku80-targeted pH-sensitive peptide-PNA conjugates are tumor selective and sensitize cancer cells to ionizing radiation. Molecular Cancer Research : McR
Svoronos AA, Bahal R, Pereira MC, et al. (2019) Tumor-Targeted, Cytoplasmic Delivery of Large, Polar Molecules using a pH-Low Insertion Peptide. Molecular Pharmaceutics
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