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Bianca M. Nagata

Government of the United States of America - Infectious Disease Pathogenesis Section, Comparative Medicine Branch

Bethesda, MD 20814

United States

SCHOLARLY PAPERS

2

DOWNLOADS

86

TOTAL CITATIONS

0

Scholarly Papers (2)

1.

Heme Oxygenase-1 Induction by Blood Feeding Arthropods Controls Skin Inflammation and Promotes Tolerance to Pathogens

Number of pages: 46 Posted: 21 May 2020
Government of the United States of America - Vector Molecular Biology Section, Government of the United States of America - Vector Molecular Biology Section, Government of the United States of America - Vector Molecular Biology Section, Government of the United States of America - Vector Molecular Biology Section, Government of the United States of America - Division of Emerging and Transfusion Transmitted Diseases, Government of the United States of America - Vector Molecular Biology Section, Government of the United States of America - Vector Molecular Biology Section, Government of the United States of America - Vector Molecular Biology Section, Government of the United States of America - Vector Molecular Biology Section, Government of the United States of America - Infectious Disease Pathogenesis Section, Comparative Medicine Branch, Fundação Calouste Gulbenkian - Instituto Gulbenkian de Ciência, Government of the United States of America - Vector Molecular Biology Section, Government of the United States of America - Infectious Disease Pathogenesis Section, - Gonçalo Moniz Institute (IGM), Government of the United States of America - Laboratory of Emerging Pathogens, Fundação Calouste Gulbenkian - Instituto Gulbenkian de Ciência, Government of the United States of America - Division of Emerging and Transfusion Transmitted Diseases, Government of the United States of America - Laboratory of Emerging Pathogens, Government of the United States of America - Vector Molecular Biology Section and Government of the United States of America - Vector Molecular Biology Section
Downloads 46 (1,121,190)

Abstract:

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Hematophagous arthropods, heme oxygenase-1, red blood cells, erythrophagocytosis, vector-borne disease, inflammation, Disease tolerance.

2.

Breadth of SARS-CoV-2 Neutralization and Protection Induced by a Nanoparticle Vaccine

Number of pages: 59 Posted: 18 Feb 2022
Duke University - Duke Human Vaccine Institute, University of North Carolina (UNC) at Chapel Hill - Department of Epidemiology, University of North Carolina (UNC) at Chapel Hill - Department of Epidemiology, Duke University - Duke Human Vaccine Institute, Duke University - Duke Human Vaccine Institute, Duke University - Duke Human Vaccine Institute, Duke University - Duke Human Vaccine Institute, Duke University - Duke Human Vaccine Institute, Duke University - Department of Surgery, Duke University - Duke Human Vaccine Institute, Duke University - Department of Surgery, Government of the United States of America - Infectious Disease Pathogenesis Section, Comparative Medicine Branch, Government of the United States of America - Infectious Disease Pathogenesis Section, Comparative Medicine Branch, Government of the United States of America - Infectious Disease Pathogenesis Section, Comparative Medicine Branch, Government of the United States of America - Vaccine Research Center, Government of the United States of America - Vaccine Research Center, Duke University - Duke Human Vaccine Institute, Duke University - Duke Human Vaccine Institute, Duke University - Duke Human Vaccine Institute, Duke University - Duke Human Vaccine Institute, Duke University - Duke Human Vaccine Institute, Duke University - Duke Human Vaccine Institute, Duke University - Duke Human Vaccine Institute, Duke University - Duke Human Vaccine Institute, Duke University - Department of Surgery, Duke University - Duke Human Vaccine Institute, Duke University - Duke Human Vaccine Institute, Center for Biologics Evaluation and Research (CBER), Food and Drug Administration - Division of Viral Products, Duke University - Duke Human Vaccine Institute, Beth Israel Deaconess Medical Center, University of Pennsylvania - Department of Microbiology, University of Pennsylvania - Department of Microbiology, Corporate Research Materials Lab, 3M Company, Infectious Disease Research Institute, Government of the United States of America - Infectious Disease Pathogenesis Section, Comparative Medicine Branch, BIOQUAL, BIOQUAL, Center for Biologics Evaluation and Research (CBER), Food and Drug Administration - Division of Viral Products, Government of the United States of America - Vaccine Research Center, Center for Biologics Evaluation and Research (CBER), Food and Drug Administration - Division of Viral Products, University of North Carolina (UNC) at Chapel Hill - Department of Microbiology and Immunology, Duke University - Duke Human Vaccine Institute, Duke University - Duke Human Vaccine Institute and Duke University - Duke Human Vaccine Institute
Downloads 40 (1,196,171)

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