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ACS Infectious Diseases|November 17, 2020
Kinetic Modeling of West Nile Virus Fusion Indicates an Off-Pathway StateAbraham Park, Olivia Graceffa, Robert J RawleProceedings of the National Academy of Sciences of the United States of America|March 20, 2020
Influenza hemagglutinin drives viral entry via two sequential intramembrane mechanismsAnna Pabis, Robert J Rawle, Peter M KassonLangmuir : the ACS Journal of Surfaces and Colloids|February 26, 2010
Covalent attachment of lipid vesicles to a fluid-supported bilayer allows observation of DNA-mediated vesicle interactionsBettina van Lengerich, Robert J Rawle, Steven G BoxerBiorxiv : the Preprint Server for Biology|September 2, 2025
Surface-attached model lipid membranes derived from human red blood cellsSanyukta Prakash Mudakannavar, Matthew D Mitchell, Robert J RawleBiophysical Journal|July 14, 2016
Disentangling Viral Membrane Fusion from Receptor Binding Using Synthetic DNA-Lipid ConjugatesRobert J Rawle, Steven G Boxer, Peter M KassonJournal of Chromatography. B, Analytical Technologies in the Biomedical and Life Sciences|August 29, 2022
Choice of buffer in mobile phase can substantially alter peak areas in quantification of lipids by HPLC-ELSDOliva Graceffa, Eunice Kim, Rachel Broweleit, et al.Plos One|February 8, 2014
Choose your label wisely: water-soluble fluorophores often interact with lipid bilayersLaura D Hughes, Robert J Rawle, Steven G BoxerLangmuir : the ACS Journal of Surfaces and Colloids|August 21, 2007
Creation of mammalian single- and double-stranded DNA surfaces: a real-time QCM-D studyRobert J Rawle, Cynthia R D Selassie, Malkiat S JohalBiomacromolecules|December 14, 2007
A real-time QCM-D approach to monitoring mammalian DNA damage using DNA adsorbed to a polyelectrolyte surfaceRobert J Rawle, Malkiat S Johal, Cynthia R D SelassieScientific Reports|July 20, 2016
Influenza viral membrane fusion is sensitive to sterol concentration but surprisingly robust to sterol chemical identityKatarzyna E Zawada, Dominik Wrona, Robert J Rawle, et al.Pageof 3