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Cited 20 time in webofscience Cited 24 time in scopus
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Enhancement of glycoprotein-based DNA vaccine for viral hemorrhagic septicemia virus (VHSV) via addition of the molecular adjuvant, DDX41

Authors
Lazarte, Jassy Mary S.Kim, Young RimLee, Jung SeokIm, Se PyeongKim, Si WonJung, Jae WookKim, JaesungLee, Woo JaiJung, Tae Sung
Issue Date
Mar-2017
Publisher
Academic Press
Keywords
DDX41; Glycoprotein; VHSV; Interferon; Innate immune system
Citation
Fish and Shellfish Immunology, v.62, pp 356 - 365
Pages
10
Indexed
SCI
SCIE
SCOPUS
Journal Title
Fish and Shellfish Immunology
Volume
62
Start Page
356
End Page
365
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/13867
DOI
10.1016/j.fsi.2017.01.031
ISSN
1050-4648
1095-9947
Abstract
The use of molecular adjuvants to improve the immunogenicity of DNA vaccines has been thoroughly studied in recent years. Glycoprotein (G)-based DNA vaccines had been proven to be effective in combating infection against Rhabdovirus (especially infectious hematopoietic necrosis virus, IHNV) in salmonids. DDX41 is a helicase known to induce antiviral and inflammatory responses by inducing a type I IFN innate immune response. To gain more information regarding G-based DNA vaccines in olive flounder (Paralicthys olivaceus), we tried to develop a more efficient G-based DNA vaccine by adding a molecular adjuvant, DDX41. We designed a DNA vaccine in which the VHSV glycoprotein (G-protein) and DDX41 were driven by the EF-1 alpha and CMV promoters, respectively. Olive flounders were intramuscularly immunized with 1 mu g of plasmids encoding the G-based DNA vaccine alone (pEF-G), the molecular adjuvant alone (pEF-D), or the vaccine-adjuvant construct (pEF-GD). At two different time points, 15 and 30 days later, the fish were intraperitoneally infected with VHSV (100 mu L; 1 x 10(6) TCID50/mL). Our assays revealed that the plasmid constructs showed up-regulated expression of IFN-1 and its associated genes at day 3 post-vaccination in both kidney and spleen samples. Specifically, pEF-GD showed statistically higher expression of immune response genes than pEF-G and pEF-D treated group (p < 0.05/p < 0.001). After VHSV challenge, the fish group treated with pEF-GD showed higher survival rate than the pEF-G treated group, though difference was not statistically significant in the 15 dpv challenged group however in the 30 dpv challenged group, the difference was statistically significant (p < 0.05). Together, these results clearly demonstrate that DDX41 is an effective adjuvant for the G-based DNA vaccine in olive flounder. Our novel findings could facilitate the development of more effective DNA vaccines for the aquaculture industry. (C) 2017 Elsevier Ltd. All rights reserved.
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