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Immunogenicity of DNA and Recombinant Sendai Virus Vaccines Expressing the HIV-1 gag Gene 被引量:1

Immunogenicity of DNA and Recombinant Sendai Virus Vaccines Expressing the HIV-1 gag Gene
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摘要 Combinations of DNA and recombinant-viral-vector based vaccines are promising AIDS vaccine methods because of their potential for inducing cellular immune responses. It was found that Gag-specific cytotoxic lymphocyte (CTL) responses were associated with lowering viremia in an untreated HIV-1 infected cohort. The main objectives of our studies were the construction of DNA and recombinant Sendai virus vector (rSeV) vaccines containing a gag gene from the prevalent Thailand subtype B strain in China and trying to use these vaccines for therapeutic and prophylactic vaccines. The candidate plasmid DNA vaccine pcDNA3.1(+)-gag and recombinant Sendai virus vaccine (rSeV-gag) were constructed separately. It was verified by Western blotting analysis that both DNA and rSeV-gag vaccines expressed the HIV-1 Gag protein correctly and efficiently. Balb/c mice were immunized with these two vaccines in different administration schemes. HIV-1 Gag-specific CTL responses and antibody levels were detected by intracellular cytokine staining assay and enzyme-linked immunosorbant assay (ELISA) respectively. Combined vaccines in a DNA prime/rSeV-gag boost vaccination regimen induced the strongest and most long-lasting Gag-specific CTL and antibody responses. It maintained relatively high levels even 9 weeks post immunization. This data indicated that the prime-boost regimen with DNA and rSeV-gag vaccines may offer promising HIV vaccine regimens. Combinations of DNA and recombinant-viral-vector based vaccines are promising AIDS vaccine methods because of their potential for inducing cellular immune responses. It was found that Gag-specific cytotoxic lymphocyte (CTL) responses were associated with lowering viremia in an untreated HIV-1 infected cohort. The main objectives of our studies were the construction of DNA and recombinant Sendai virus vector (rSeV) vaccines containing a gag gene from the prevalent Thailand subtype B strain in China and trying to use these vaccines for therapeutic and prophylactic vaccines. The candidate plasmid DNA vaccine pcDNA3.1 (+)-gag and recombinant Sendai virus vaccine (rSeV-gag) were constructed separately. It was verified by Western blotting analysis that both DNA and rSeV-gag vaccines expressed the HIV-1 Gag protein correctly and efficiently. Balb/c mice were immunized with these two vaccines in different administration schemes. HIV-1 Gag-specific CTL responses and antibody levels were detected by intracellular cytokine staining assay and enzyme-linked immunosorbant assay (ELISA) respectively. Combined vaccines in a DNA prime/rSeV-gag boost vaccination regimen induced the strongest and most long-lasting Gag-specific CTL and antibody responses. It maintained relatively high levels even 9 weeks post immunization. This data indicated that the prime-boost regimen with DNA and rSeV-gag vaccines may offer promising HIV vaccine regimens.
出处 《Virologica Sinica》 SCIE CAS CSCD 2008年第4期295-304,共10页 中国病毒学(英文版)
基金 National 863 project (2003AA219070)
关键词 人体免疫缺损病毒疫苗 艾滋病 仙台病毒 免疫性 HIV-1 vaccines gag gene DNA vector Sendai virus
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  • 1[1]Altfeld M,Rosenberg E S.2000.The role of CD4+ T helper cells in the cytotoxic T lymphocyte response to HIV-I.Curt" Opin lmmtmol,12 (4):375-380.
  • 2[2]Amara R R,Villinger F,Airman J D,et al.2001.Control of a mucosal challenge and prevention of AIDS by a multi protein DNA/MVA vaccine.Science,292 (5514):69-74.
  • 3[3]Andre S,Seed B,Eberle J,et al.1998.Increased immune response elicited by DNA vaccination with a synthetic gpl20 sequence with optimized codon usage.J Viroi,72(2):1497-1503.
  • 4[4]Betts M R,Ambrozak D R Douek D C,et al.2001.Analysis of total human immunodeficiency virus (HIV)-specific CD4 (+) and CDS(+) T-cell responses:relationship to viral load in untreated HIV infection.J Virol,75 (24):11983-1991.
  • 5[5]Bitzer M,Armeanu S,Lauer U M,et al.2003.Sendal virus vectors as an emerging negative-strand RNA viral vector system.J Gene Meal,5 (7):543-553.
  • 6[6]Borrow P,Lewicki H,Hahn B H,et al.1994.Virus specific CD8+ cytotoxic T-lymphocyte activity associated with control of viremia in primary human immunodefi ciency virus type I infection.J Virol,68 (9):6103-6110.
  • 7[7]Geldmacher C,Currier J R,Herrmann E,et al.2007.CD8 T-cell recognition of multiple epitopes within specific Gag regions is associated with maintenance of a low steady-state viremia in human immunodeficiency virus type I-seropositive patients.J Virol,81 (5):2440-2448.
  • 8[8]Hasan M K,Kato A,Shioda T,et al.1997.Creation of an infectious recombinant Sendal virus expressing the firefly luciferase geue from the 3' proximal first locus.J Gen Virol,78:2813-2820
  • 9[9]Im E J,Nkolola J P,di Gleria K,et al.2006.Induction of long-lasting multi-specific CD8+ T cells by a four component DNA-MVA/HIVA-RENTA candidate HIV-1 vaccine in rhesus macaques.Eur J Immunol,36 (10):2574-2584.
  • 10[10]Kano M,Matano T,Nakamura H,et al.2000.Elicitation of protective immunity against simian immunodeficiency virus infection by a recombinant Sendal virus expressing the Gag protein.AIDS,14 (9):1281-1282.

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