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Immunogenicity and relative attenuation of different vaccinia-rabies virus recombinants.

作者信息

Zhu J H, Wang J, Cai B, Zhao W, Zhu Y, Chao R, Chen L, Xue H, Ying B L, Li C P, Hu Q L, Sha J, Esposito J J

机构信息

Wuhan Institute of Biological Products, Ministry of Public Health, People's Republic of China.

出版信息

Arch Virol. 1996;141(6):1055-65. doi: 10.1007/BF01718609.

DOI:10.1007/BF01718609
PMID:8712923
Abstract

Immunogenicity and relative attenuation were examined for the following Tian Tan strain vaccinia-rabies recombinant viruses: 1) NGc-1, which coexpresses the glycoprotein (G) and nucleocapsid protein (N) of the rabies virus Challenge Virus Standard (CVS) strain; 2) Nc-1, which expresses the CVS N; 3) Gc-2, Gc-3, Gc-4, and Gc-5, which express CVS G via promoters from different vaccinia strains or from different vaccinia genome loci; 4) Ga-1, which expresses the G of rabies virus strain aG; and 5) Gas-1; which expresses the carboxyltruncated G ectodomain (Gs) of strain aG. All but Nc-1 and Gas-1 induced rabies virus neutralizing antibodies (VNAs) and protected groups of mice at very high frequencies from intramuscular (IM) or intracranial (IC) challenge with CVS or SW1 Shanghai dog street rabies virus (SRV); Nc-1 and Gas-1 were partly protective, more frequently against IM challenge. NGc-1 and Gc-5 appeared to induce high levels of VNAs sooner after immunization than the other constructs in mice. Relative attenuation assessed by IM infection of neonatal mice, IC infection of adult mice, and intradermal infection of rabbits with varying doses was best for NGc-1. All the recombinants were at least 100-fold more attenuated than the parent, Tian Tan vaccinia virus. Gc-2, Gc-3, Gc-4, Gc-5, and NGc-1 induced VNAs after immunization of dogs, and a subset of VNA-positive animals vaccinated with NGc-1 or Gc-3 were protected against an otherwise lethal IM injection of SRV at 21 days after vaccination.

摘要

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本文引用的文献

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Rabies virus antinucleoprotein antibody protects against rabies virus challenge in vivo and inhibits rabies virus replication in vitro.狂犬病病毒抗核蛋白抗体在体内可抵御狂犬病病毒攻击,并在体外抑制狂犬病病毒复制。
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