Vaccination with inactivated or live-attenuated chimeric PCV1-2 results in decreased viremia in challenge-exposed pigs and may reduce transmission of PCV2

被引:15
作者
Hemann, M. [1 ]
Beach, N. M. [2 ]
Meng, X. J. [2 ]
Halbur, P. G. [1 ]
Opriessnig, T. [1 ]
机构
[1] Iowa State Univ, Coll Vet Med, Dept Vet Diagnost & Prod Anim Med, Ames, IA 50011 USA
[2] Virginia Tech, Coll Vet Med, Ctr Mol Med & Infect Dis, Dept Biomed Sci & Pathobiol, Blacksburg, VA USA
关键词
Porcine circovirus type 2; Vaccination; Transmission; PORCINE CIRCOVIRUS TYPE-2; MULTISYSTEMIC WASTING SYNDROME; SYNDROME VIRUS PRRSV; NONPATHOGENIC PCV1; PROTECTIVE IMMUNITY; GENOMIC BACKBONE; PARVOVIRUS PPV; CAPSID GENE; INFECTION; PATHOGENICITY;
D O I
10.1016/j.vetmic.2012.01.024
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The objectives were to determine transmissibility of PCV2 to nave contact pigs 140 days after infection of resident pigs and the benefit of vaccination with live-attenuated or inactivated chimeric PCV2 vaccines on chronic PCV2 infection. Twelve 6-week old PCV2 nave pigs were randomly divided into four groups of three pigs: negative controls, positive controls, and pigs vaccinated with either a live-attenuated or inactivated chimeric PCV1-2 vaccine. All animals were bled weekly and tested for anti-PCV2 antibodies and PCV2 and PCV1-2 DNA and all groups except negative controls were challenged at 10 weeks. Two pigs vaccinated with the live PCV2 vaccine were PCV1-2 viremic at a single observation point. Both vaccine regimens induced an anti-PCV2 antibody response which was detected sooner and reached a higher level with the commercial inactivated vaccine. Both vaccines significantly decreased the concentration and duration of PCV2 viremia compared to the positive controls. PCV2 DNA was detected in lymphoid tissues of 1/3 pigs in the live-attenuated vaccine group and 3/3 positive control pigs. Three, 2-week old, PCV2 naive contact pigs were comingled with each group at 168 days post-vaccination or 140 days post-challenge. After seven days of co-housing, the resident pigs were removed and the contact pigs remained for six weeks. Evidence of chimeric PCV1-2 vaccine or PCV2 challenge virus transmission to nave contact pigs was lacking in all groups. The results of this study suggest that 140-day closure of a small pig population in a controlled environment may result in stabilization and elimination of PCV2. (C) 2012 Elsevier B.V. All rights reserved.
引用
收藏
页码:180 / 186
页数:7
相关论文
共 23 条
[1]   Novel chimeric porcine circovirus (PCV) with the capsid gene of the emerging PCV2b subtype cloned in the genomic backbone of the non-pathogenic PCV1 is attenuated in vivo and induces protective and cross-protective immunity against PCV2b and PCV2a subtypes in pigs [J].
Beach, Nathan M. ;
Ramamoorthy, Sheela ;
Opriessnig, Tanja ;
Wu, Stephen Q. ;
Meng, Xiang-Jin .
VACCINE, 2010, 29 (02) :221-232
[2]   Postweaning multisystemic wasting syndrome induced after experimental inoculation of cesarean-derived, colostrum-deprived piglets with type 2 porcine circovirus [J].
Bolin, SR ;
Stoffregen, WC ;
Nayar, GPS ;
Hamel, AL .
JOURNAL OF VETERINARY DIAGNOSTIC INVESTIGATION, 2001, 13 (03) :185-194
[3]   Immunogenicity and pathogenicity of chimeric infectious DNA clones of pathogenic porcine circovirus type 2 (PCV2) and nonpathogenic PCV1 in weanling pigs [J].
Fenaux, M ;
Opriessnig, T ;
Halbur, PG ;
Meng, XJ .
JOURNAL OF VIROLOGY, 2003, 77 (20) :11232-11243
[4]   A chimeric porcine circovirus (PCV) with the immunogenic capsid gene of the pathogenic PCV type 2 (PCV2) cloned into the genomic backbone of the nonpathogenic PCV1 induces protective immunity against PCV2 infection in pigs [J].
Fenaux, M ;
Opriessnig, T ;
Halbur, PG ;
Elvinger, F ;
Meng, XJ .
JOURNAL OF VIROLOGY, 2004, 78 (12) :6297-6303
[5]   One dose of a porcine circovirus 2 (PCV2) sub-unit vaccine administered to 3-week-old conventional piglets elicits cell-mediated immunity and significantly reduces PCV2 viremia in an experimental model [J].
Fort, M. ;
Sibila, M. ;
Perez-Martin, E. ;
Nofrarias, M. ;
Mateu, E. ;
Segales, J. .
VACCINE, 2009, 27 (30) :4031-4037
[6]   Porcine Circovirus Type 2 and Porcine Circovirus-Associated Disease [J].
Gillespie, J. ;
Opriessnig, T. ;
Meng, X. J. ;
Pelzer, K. ;
Buechner-Maxwell, V. .
JOURNAL OF VETERINARY INTERNAL MEDICINE, 2009, 23 (06) :1151-1163
[7]   COMPARISON OF THE PATHOGENICITY OF 2 US PORCINE REPRODUCTIVE AND RESPIRATORY SYNDROME VIRUS ISOLATES WITH THAT OF THE LELYSTAD VIRUS [J].
HALBUR, PG ;
PAUL, PS ;
FREY, ML ;
LANDGRAF, J ;
EERNISSE, K ;
MENG, XJ ;
LUM, MA ;
ANDREWS, JJ ;
RATHJE, JA .
VETERINARY PATHOLOGY, 1995, 32 (06) :648-660
[8]   A candidate inactivated chimeric vaccine PCV1-2 constructed based on PCV1 and PCV2 isolates originating in China and its evaluation in conventional pigs in regard to protective efficacy against PCV2 infection [J].
Liu Xujie ;
Wang Xiaobo ;
Song Yi ;
Fan Jing ;
Gao Song ;
Liu Xiufan .
MICROBIOLOGY AND IMMUNOLOGY, 2011, 55 (04) :254-266
[9]   Virucidal efficacy of nine commercial disinfectants against porcine circovirus type 2 [J].
Martin, Helene ;
Le Potier, Marie-Frederique ;
Maris, Pierre .
VETERINARY JOURNAL, 2008, 177 (03) :388-393
[10]   Modified indirect porcine circovirus (PCV) type 2-based and recombinant capsid protein (ORF2)-based enzyme-linked Immunosorbent assays for detection of antibodies to PCV [J].
Nawagitgul, P ;
Harms, PA ;
Morozov, I ;
Thacker, BJ ;
Sorden, SD ;
Lekcharoensuk, C ;
Paul, PS .
CLINICAL AND DIAGNOSTIC LABORATORY IMMUNOLOGY, 2002, 9 (01) :33-40