Myerson, Jacob W.Patel, PriyalRubey, Kathryn M.Zamora, Marco E.Rubey, KathrynZaleski, Michael H.Habibi, NahalWalsh, LandisLee, Yi-WeiLuther, DavidFerguson, Laura T.Marcos-Contreras, Oscar A.Glassman, Patrick M.Mazaleuskaya, Liudmila L.Johnston, IanHood, Elizabeth D.Shuvaeva, TeaWu, JichuanZhang, Hong-YingGregory, Jason V.Kiseleva, Raisa Y.Nong, JiaGrosser, TiloGreineder, Colin F.Mitragotri, SamirWorthen, George S.Rotello, Vincent M.Lahann, JoergMuzykantov, Vladimir R.Brenner, Jacob S.2023-06-282021-11-18Myerson, Jacob W, Priyal N Patel, Kathryn M Rubey, Marco E Zamora, Michael H Zaleski, Nahal Habibi, Landis R Walsh, et al. 2022. “Supramolecular Arrangement of Protein in Nanoparticle Structures Predicts Nanoparticle Tropism for Neutrophils in Acute Lung Inflammation.” Nature Nanotechnology 17 (1): 86–97.1748-33871748-3395https://nrs.harvard.edu/URN-3:HUL.INSTREPOS:37376282en-USElectrical and Electronic EngineeringCondensed Matter PhysicsGeneral Materials ScienceBiomedical EngineeringAtomic and Molecular Physics, and OpticsBioengineeringSupramolecular Arrangement of Protein in Nanoparticle Structures Predicts Nanoparticle Tropism for Neutrophils in Acute Lung InflammationJournal Article2023-06-2810.1038/s41565-021-00997-y