CORE
CO
nnecting
RE
positories
Services
Services overview
Explore all CORE services
Access to raw data
API
Dataset
FastSync
Content discovery
Recommender
Discovery
OAI identifiers
OAI Resolver
Managing content
Dashboard
Bespoke contracts
Consultancy services
Support us
Support us
Membership
Sponsorship
Research partnership
About
About
About us
Our mission
Team
Blog
FAQs
Contact us
Community governance
Governance
Advisory Board
Board of supporters
Research network
Innovations
Our research
Labs
research
Vaccination with DNA plasmids expressing Gn coupled to C3d or alphavirus replicons expressing Gn protects mice against rift valley fever virus
Authors
A Jouan
A Zaki
+57 more
B Botros
BH Bird
BS Peters
CS Schmaljohn
CS Schmaljohn
Daniel G. Bausch
DB Wallace
DV Lim
FR Toapanta
FR Toapanta
G Lorenzo
GF Meadors 3rd
H Caplen
I Watanabe
J Lubroth
J Meegan
J Naslund
J Naslund
JA Mitchell
JF Bower
JF Bower
JR Haynes
JT van Oirschot
K Keegan
K Spik
KA Hubbard
M Mkrtichyan
MA Kutzler
Mark T. Heise
MT Heise
N Lagerqvist
Nitin Bhardwaj
P Hunter
P Jansen van Vuren
P Nguku
P Pittman
P Pushko
P Vialat
PR Pittman
PW Dempsey
R Gorchakov
R Gorchakov
R Randall
RJ Daubney
S Won
SA Kamal
SR Gerrard
SR Gerrard
T Shoemaker
TA Madani
TD Green
Ted M. Ross
TM Pertmer
TM Pertmer
TM Ross
TM Ross
UB Balasuriya
Publication date
1 January 2010
Publisher
Doi
View
on
PubMed
Abstract
Background: Rift Valley fever (RVF) is an arthropod-borne viral zoonosis. Rift Valley fever virus (RVFV) is an important biological threat with the potential to spread to new susceptible areas. In addition, it is a potential biowarfare agent. Methodology/Principal Findings: We developed two potential vaccines, DNA plasmids and alphavirus replicons, expressing the Gn glycoprotein of RVFV alone or fused to three copies of complement protein, C3d. Each vaccine was administered to mice in an all DNA, all replicon, or a DNA prime/replicon boost strategy and both the humoral and cellular responses were assessed. DNA plasmids expressing Gn-C3d and alphavirus replicons expressing Gn elicited high titer neutralizing antibodies that were similar to titers elicited by the live-attenuated MP12 virus. Mice vaccinated with an inactivated form of MP12 did elicit high titer antibodies, but these antibodies were unable to neutralize RVFV infection. However, only vaccine strategies incorporating alphavirus replicons elicited cellular responses to Gn. Both vaccines strategies completely prevented weight loss and morbidity and protected against lethal RVFV challenge. Passive transfer of antisera from vaccinated mice into naïve mice showed that both DNA plasmids expressing Gn-C3d and alphavirus replicons expressing Gn elicited antibodies that protected mice as well as sera from mice immunized with MP12. Conclusion/Significance: These results show that both DNA plasmids expressing Gn-C3d and alphavirus replicons expressing Gn administered alone or in a DNA prime/replicon boost strategy are effective RVFV vaccines. These vaccine strategies provide safer alternatives to using live-attenuated RVFV vaccines for human use. © 2010 Bhardwaj et al
Similar works
Full text
Open in the Core reader
Download PDF
Available Versions
D-Scholarship@Pitt
See this paper in CORE
Go to the repository landing page
Download from data provider
oai:d-scholarship.pitt.edu:133...
Last time updated on 19/07/2013
Name not available
See this paper in CORE
Go to the repository landing page
Download from data provider
oai:d-scholarship.pitt.edu:133...
Last time updated on 23/11/2016
Carolina Digital Repository
See this paper in CORE
Go to the repository landing page
Download from data provider
cdr.lib.unc.edu:gx41mr87d
Last time updated on 24/11/2020
Name not available
See this paper in CORE
Go to the repository landing page
Download from data provider
oai:d-scholarship.pitt.edu:133...
Last time updated on 15/12/2016
Crossref
See this paper in CORE
Go to the repository landing page
Download from data provider
info:doi/10.1371%2Fjournal.pnt...
Last time updated on 05/06/2019
Directory of Open Access Journals
See this paper in CORE
Go to the repository landing page
Download from data provider
oai:doaj.org/article:b1f7222fb...
Last time updated on 12/10/2017