Tick extracellular vesicles enable arthropod feeding and promote distinct outcomes of bacterial infection

Adela S. Oliva Chávez(University of Maryland, Baltimore), Joao H. F. Pedra(University of Maryland, Baltimore), Choukri Ben Mamoun(Yale University), Glen A. Scoles(Beltsville Agricultural Research Center), Holly Hammond(University of Maryland, Baltimore), Nathan K. Archer(Johns Hopkins University), Marcelo B. Sztein(University of Maryland, Baltimore), Preeti Shahi(University of Maryland, Baltimore), Eileen M. Barry(University of Maryland, Baltimore), Lauren Lawres(Yale University), L. Rainer Butler(University of Maryland, Baltimore), Dana K. Shaw(Washington State University), Erin E. McClure Carroll(University of Maryland, Baltimore), Amanda D. Buskirk(University of Maryland, Baltimore), Laura Santambrogio(Cornell University), Lloyd Miller(Johnson & Johnson (United States)), Steven M. Jay(University of Maryland, College Park), Liron Marnin(University of Pennsylvania), Kateryna Morozova(Albert Einstein College of Medicine), Jesús G. Valenzuela(National Institute of Allergy and Infectious Diseases), Utpal Pal(University of Maryland, College Park), Shelby L. Ford(Centers for Disease Control and Prevention), Daniel E. Sonenshine(National Institute of Allergy and Infectious Diseases), Cristina C. Clement(Albert Einstein College of Medicine), Jason F. Huntley(University of Toledo), Kathleen L. Mason(Washington State University), Brenden G. Tully(University of Toledo), Marcela F. Pasetti(University of Maryland Global Campus), Xiaowei Wang(Argonne National Laboratory), Michael L. Levin(Centers for Disease Control and Prevention), Brandi E. Hobbs(University of Maryland, Baltimore), Anya J. O’ Neal(University of Maryland, Baltimore), Michail Kotsyfakis(Foundation for Research and Technology Hellas)
Nature Communications
June 17, 2021
Cited by 61


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