Effect of priming/booster immunisation protocols on immune response to canine parvovirus peptide induced by vaccination with a chimaeric plant virus construct

被引:9
作者
Nicholas, BL [1 ]
Brennan, FR
Hamilton, WDO
Wakelin, D
机构
[1] Univ Nottingham, Sch Biosci, Dept Agr & Hort, Loughborough LE12 5RD, Leics, England
[2] Huntingdon Life Sci, Huntingdon PE28 4HS, Cambs, England
[3] Proteom Ltd, Cambridge CB2 4AT, England
[4] Univ Nottingham, Sch Life & Environm Sci, Nottingham NG7 2RD, England
关键词
chimaeric virus particles; mucosal immunity; challenge; priming;
D O I
10.1016/S0264-410X(03)00054-9
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
Expression of a 17-mer peptide sequence from canine parvovirus expressed on cowpea mosaic virus (CPMV) to form chimaeric virus particles (CVPs) creates vaccine antigens that elicit strong anti-peptide immune responses in mice. Systemic (subcutaneous, s.c.) immunisation and boosting with such CVP constructs produces IgG(2a) serum antibody responses, while mucosal (intranasal, i.n.) immunisation and boosting elicits intestinal IgA responses. Combinations of systemic and mucosal routes for priming and boosting immunisations were used to examine their influence on the level, type and location of immune response generated to one of these constructs (CVP-1). In all cases. s.c. administration, whether for immunisation or boosting, generated a Th1-biased response, reflected in a predominantly IgG(2a) serum antibody isotype and secretion of IFN-gamma from in vitro-stimulated lymphocytes. Serum antibody responses were greatest in animals primed and boosted subcutaneously, and least in mucosally vaccinated mice. The i.n. exposure also led to IFN-gamma release from in vitro-stimulated cells. but serum IgG a was significantly elevated only in mice primed intranasally and boosted subcutaneously. Peptide-and wild-type CPMV-specific IaA responses in gut lavage fluid were greatest in animals exposed mucosally and least in those primed and boosted subcutaneously or primed subcutaneously and boosted orally. Lymphocytes from immunised mice proliferated in response to in vitro stimulation with CPMV but not with peptide. The predominant secretion of IFN-gamma from all immunising/boosting combinations indicates that the route of vaccination and challenge does not alter the Th1 bias of the response to CVP constructs. However, optimal serum and intestinal antibody responses were achieved by combining s.c. and i.n. administration. (C) 2003 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:2441 / 2447
页数:7
相关论文
共 19 条
  • [1] Effect of route of vaccination with vaccinia virus expressing HSV-2 glycoprotein D on protection from genital HSV-2 infection
    Bernstein, DI
    [J]. VACCINE, 2000, 18 (14) : 1351 - 1358
  • [2] Pseudomonas aeruginosa outer-membrane protein F epitopes are highly immunogenic in mice when expressed an a plant virus
    Brennan, FR
    Jones, TD
    Gilleland, LB
    Bellaby, T
    Xu, F
    North, PC
    Thompson, A
    Staczek, J
    Lin, T
    Johnson, JE
    Hamilton, WDO
    Gilleland, HE
    [J]. MICROBIOLOGY-SGM, 1999, 145 : 211 - 220
  • [3] Chimeric plant virus particles administered nasally or orally induce systemic and mucosal immune responses in mice
    Brennan, FR
    Bellaby, T
    Helliwell, SM
    Jones, TD
    Kamstrup, S
    Dalsgaard, K
    Flock, JI
    Hamilton, WDO
    [J]. JOURNAL OF VIROLOGY, 1999, 73 (02) : 930 - 938
  • [4] The level of protection against rotavirus shedding in mice following immunization with a chimeric VP6 protein is dependent on the route and the coadministered adjuvant
    Choi, AH
    McNeal, MM
    Flint, JA
    Basu, M
    Lycke, NY
    Clements, JD
    Bean, JA
    Davis, HL
    McCluskie, MJ
    VanCott, JL
    Ward, RL
    [J]. VACCINE, 2002, 20 (13-14) : 1733 - 1740
  • [5] Plant-derived vaccine protects target animals against a viral disease
    Dalsgaard, K
    Uttenthal, A
    Jones, TD
    Xu, F
    Merryweather, A
    Hamilton, WDO
    Langeveld, JPM
    Boshuizen, RS
    Kamstrup, S
    Lomonossoff, GP
    Porta, C
    Vela, C
    Casal, JI
    Meloen, RH
    Rodgers, PB
    [J]. NATURE BIOTECHNOLOGY, 1997, 15 (03) : 248 - 252
  • [6] Mucosal immunization with experimental feline immunodeficiency virus (FIV) vaccines induces both antibody and T cell responses but does not protect against rectal FIV challenge
    Finerty, S
    Stokes, CR
    Gruffydd-Jones, TJ
    Hillman, TJ
    Reeves, NA
    Whiting, CV
    Schaaper, WMM
    Dalsgaard, K
    Harbour, DA
    [J]. VACCINE, 2000, 18 (28) : 3254 - 3265
  • [7] A new intra-NALT route elicits mucosal and systemic immunity against Moraxella catarrhalis in a mouse challenge model
    Hou, YC
    Hu, WG
    Hirano, T
    Gu, XX
    [J]. VACCINE, 2002, 20 (17-18) : 2375 - 2381
  • [8] Different roles for CD4(+) and CD8(+) T lymphocytes and macrophage subsets in the control of a generalized virus infection
    Karupiah, G
    Buller, RML
    vanRooijen, N
    Duarte, CJ
    Chen, JH
    [J]. JOURNAL OF VIROLOGY, 1996, 70 (12) : 8301 - 8309
  • [9] Protective immunity against murine hepatitis virus (MHV) induced by intranasal or subcutaneous administration of hybrids of tobacco mosaic virus that carries an MHV epitope
    Koo, M
    Bendahmane, M
    Lettieri, GA
    Paoletti, AD
    Lane, TE
    Fitchen, JH
    Buchmeier, MJ
    Beachy, RN
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1999, 96 (14) : 7774 - 7779
  • [10] Antigen presentation to Th1 and Th2 cells.
    LoMan, R
    Sedlik, C
    LeClerc, C
    [J]. REVUE FRANCAISE D ALLERGOLOGIE ET D IMMUNOLOGIE CLINIQUE, 1995, 35 (06): : 565 - 569