Bioterrorism with variola virus is of immense concern because (a) virtually the entire world population issusceptible since routine vaccination was discontinued; (b) there are no treatments; (c) the virus in aerosolform is stable; (d) the virus is transmissible person-to-person; and (e) infection results in high morbidity andmortality. Vaccination with vaccinia virus (VV) was a key factor in eradicating smallpox. The necessity tovaccinate an at-risk population with W is central to preparing for the potential threat of smallpoxbioterrorism. However recognized complications of vaccinia vaccination, especially in immunocompromisedhosts, pregnant women, and infants impose serious limitations of this strategy. In past vaccination efforts,such complications were treated in the U.S. with human vaccinia immune globulin (VIG) obtained from Wimmunized people. Current stocks of VIG are low, and while new stocks are being generated, there are stillserious drawbacks to relying on a blood product. Consequently, there is a critical need to developtherapeutic interventions to counter complications from the current vaccine and to develop a safer vaccine.As part of the mid-Atlantic Regional Center of Excellence in Biodefense & Emerging Infectious Diseases, ourpoxvirus research project's hypothesis is that vaccine candidates and new therapies can be developed byunderstanding and targeting poxvirus proteins recognized by the humoral and innate immune system. To dothis we will:1. Develop a subunit vaccine against smallpox (variola) virus (Cohen/Eisenberg/Friedman, U. Penn)2. Identify new targets of neutralizing antibody (Isaacs, U. Penn)3. Identify the targets of VIG using a proteomics approach (Lambris, U. Penn)4. Develop an ectromelia virus challenge system in the mouse as a model of smallpox pathogenesis andprevention (Braciale, U. Virginia)

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Specialized Center--Cooperative Agreements (U54)
Project #
3U54AI057168-05S2
Application #
7678786
Study Section
Special Emphasis Panel (ZAI1-NBS-M (M2))
Project Start
2008-03-01
Project End
2009-02-28
Budget Start
2008-03-01
Budget End
2009-02-28
Support Year
5
Fiscal Year
2008
Total Cost
$691,663
Indirect Cost
Name
University of Maryland Baltimore
Department
Type
DUNS #
188435911
City
Baltimore
State
MD
Country
United States
Zip Code
21201
Champion, Anna E; Bandara, Aloka B; Mohapatra, Nrusingh et al. (2018) Further Characterization of the Capsule-Like Complex (CLC) Produced by Francisella tularensis Subspecies tularensis: Protective Efficacy and Similarity to Outer Membrane Vesicles. Front Cell Infect Microbiol 8:182
Bridge, Dacie R; Blum, Faith C; Jang, Sungil et al. (2017) Creation and Initial Characterization of Isogenic Helicobacter pylori CagA EPIYA Variants Reveals Differential Activation of Host Cell Signaling Pathways. Sci Rep 7:11057
Kaempfer, Raymond; Popugailo, Andrey; Levy, Revital et al. (2017) Bacterial superantigen toxins induce a lethal cytokine storm by enhancing B7-2/CD28 costimulatory receptor engagement, a critical immune checkpoint. Receptors Clin Investig 4:
Molleston, Jerome M; Cherry, Sara (2017) Attacked from All Sides: RNA Decay in Antiviral Defense. Viruses 9:
Cifuentes-Muñoz, Nicolás; Sun, Weina; Ray, Greeshma et al. (2017) Mutations in the Transmembrane Domain and Cytoplasmic Tail of Hendra Virus Fusion Protein Disrupt Virus-Like-Particle Assembly. J Virol 91:
Sarute, Nicolás; Ross, Susan R (2017) New World Arenavirus Biology. Annu Rev Virol 4:141-158
Ramachandran, Girish; Aheto, Komi; Shirtliff, Mark E et al. (2016) Poor biofilm-forming ability and long-term survival of invasive Salmonella Typhimurium ST313. Pathog Dis 74:
Wahid, Rezwanul; Fresnay, Stephanie; Levine, Myron M et al. (2016) Cross-reactive multifunctional CD4+ T cell responses against Salmonella enterica serovars Typhi, Paratyphi A and Paratyphi B in humans following immunization with live oral typhoid vaccine Ty21a. Clin Immunol 173:87-95
Li, Huiguang; Hwang, Young; Perry, Kay et al. (2016) Structure and Metal Binding Properties of a Poxvirus Resolvase. J Biol Chem 291:11094-104
Chou, Yi-Ying; Cuevas, Christian; Carocci, Margot et al. (2016) Identification and Characterization of a Novel Broad-Spectrum Virus Entry Inhibitor. J Virol 90:4494-4510

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