1.Development and immunogenicity evaluation in mice of a novel mRNA vaccine expressing herpes simplex virus type 2 envelope glycoprotein gD.
Jialuo BING ; Liye JIN ; Yao DENG ; Shucai SUN ; Xiaotian HAN ; Xueting CHENG ; Zhenyong QI ; Tangqi WANG ; Ruiwen HAN ; Desheng ZHAI ; Wenjie TAN
Chinese Journal of Biotechnology 2025;41(8):3241-3251
Human alphaherpesvirus 2 (HSV-2) is the main pathogen resulting human genital herpes, which poses a major threat to the socio-economic development, while there is no effective vaccine. In this study, we developed a novel lipopolyplex (LPP)-delivered mRNA vaccine expressing the HSV-2 envelope glycoprotein gD and evaluated its immunogenicity in mice. The mRNA vaccine was prepared from the genetically modified gD mRNA synthesized in vitro combined with the LPP delivery platform and it was named gD-ORI mRNA. The expression of gD antigen in the mRNA vaccine was validated in vitro by Western blotting and indirect immunofluorescence assay, then the immune responses induced by this mRNA vaccine in mice were evaluated. The immunization with gD mRNA alone induced strong humoral and cellular immune responses in mice. Robust and long-lasting gD-specific IgG antibodies were detected in the mouse serum after booster immunization with gD-ORI mRNA. The immunized mice exhibited a Th1/Th2 balanced IgG response and robust neutralizing antibodies against HSV-2, and a clear dose-response relationship was observed. The gD-specific IgG antibodies were maintained in mice for a long time, up to 18 weeks post-booster immunization. At the same time, multifunctional gD-specific CD4+ and CD8+ T cells in vaccinated mice were detected by intracellular cytokine staining (ICS). This novel gD-expressing mRNA vaccine delivered by LPP induces strong and long-lasting immune responses in mice post booster immunization and has a promising prospect for development and application. This study provides scientific evidence and reference for the development of a new mRNA vaccine for HSV-2.
Animals
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Herpesvirus 2, Human/genetics*
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Viral Envelope Proteins/genetics*
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Mice
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Herpes Genitalis/immunology*
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RNA, Messenger/immunology*
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Female
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Mice, Inbred BALB C
;
Antibodies, Viral/blood*
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mRNA Vaccines/immunology*
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Antibodies, Neutralizing/blood*
;
Humans
2.Intranasal immunization with single-dose vaccine based on recombinant influenza virus H1N1 expressing the extracellular domain of respiratory syncytial virus G protein induces robust immunity and protection in mice
Ruiwen HAN ; Donghong WANG ; Tangqi WANG ; Xueting CHENG ; Jialuo BING ; Chengcheng ZHAI ; Shucai SUN ; Yao DENG ; Baoying HUANG ; Wenjie TAN
Chinese Journal of Microbiology and Immunology 2024;44(2):93-100
Objective:To construct a novel respiratory syncytial virus (RSV) vaccine based on a recombinant influenza virus vector and evaluate its immune protective effects in mice.Methods:A recombinant H1N1 influenza A virus (IAV) expressing the extracellular domain (Gecto) of RSV A2 G protein was constructed and rescued, named as PR8NAGecto/WSN. After in vitro verification of the Gecto expression and PR8NAGecto/WSN growth kinetics, a single dose of PR8NAGecto/WSN was used to immunize BALB/c mice through intranasal administration to evaluate the efficacy of PR8NAGecto/WSN by assessing humoral (IgG, neutralizing antibody), mucosal (IgA) and cellular immunity (IFN-γ ELISPOT). Four weeks after immunization, the mice were challenged with RSV A2 or RSV B9320 to evaluate the protective effects of PR8NAGecto/WSN by analyzing mouse body weight changes, lung tissue virus titers and pathological changes. Results:A single-dose intranasal immunization with PR8NAGecto/WSN induced robust humoral, mucosal and cellular immunity in mice. Moreover, the mice in the immunized group had lower lung virus loads and mild lung pathological damages following the challenge with RSV A or RSV B subtype as compared with the control group.Conclusions:A single-dose intranasal immunization with PR8NAGecto/WSN induces robust immunity and provide protection against RSV A and B challenges in mice. This study provides new ideas and reference for the development of novel mucosal vaccines against RSV.
3.Preaxial polydactyly in a pedigree.
Qiang WANG ; Zhenhua GUO ; Fengjuan ZHOU ; Wenmei XIE ; Tangqi LIU
Chinese Journal of Medical Genetics 2016;33(1):125-126
Adult
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Aged
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Chromosomes, Human, Pair 7
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genetics
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Female
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Humans
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Male
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Middle Aged
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Pedigree
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Polydactyly
;
genetics
4.A pedigree affected with congenital polydactyly.
Xiaorong ZHAO ; Fengjuan ZHOU ; Wenmei XIE ; Qiang WANG ; Tangqi LIU
Chinese Journal of Medical Genetics 2015;32(5):753-754

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