Immune responses of poultry to Newcastle disease virus

被引:227
作者
Kapczynski, Darrell R. [1 ]
Afonso, Claudio L. [1 ]
Miller, Patti J. [1 ]
机构
[1] ARS, Exot & Emerging Avian Dis Res Unit, Southeast Poultry Res Lab, USDA, Athens, GA 30605 USA
关键词
Newcastle disease virus; Vaccine; Immunity; Poultry; SHEDDING FOLLOWING VACCINATION; INFECTIOUS BURSAL DISEASE; MATERNAL ANTIBODY; PHYLOGENETIC CHARACTERIZATION; THERMOSTABLE VACCINE; CLINICAL-DISEASE; AVIAN INFLUENZA; LASOTA STRAIN; OVO VACCINE; WILD-TYPE;
D O I
10.1016/j.dci.2013.04.012
中图分类号
S9 [水产、渔业];
学科分类号
0908 ;
摘要
Newcastle disease (ND) remains a constant threat to poultry producers worldwide, in spite of the availability and global employment of ND vaccinations since the 1950s. Strains of Newcastle disease virus (NDV) belong to the order Mononegavirales, family Paramyxoviridae, and genus Avulavirus, are contained in one serotype and are also known as avian paramyxovirus serotype-1 (APMV-1). They are pleomorphic in shape and are single-stranded, non-segmented, negative sense RNA viruses. The virus has been reported to infect most orders of birds and thus has a wide host range. Isolates are characterized by virulence in chickens and the presence of basic amino acids at the fusion protein cleavage site. Low virulent NDV typically produce subclinical disease with some morbidity, whereas virulent isolates can result in rapid, high mortality of birds. Virulent NDV are listed pathogens that require immediate notification to the Office of International Epizootics and outbreaks typically result in trade embargos. Protection against NDV is through the use of vaccines generated with low virulent NDV strains. Immunity is derived from neutralizing antibodies formed against the viral hemagglutinin and fusion glycoproteins, which are responsible for attachment and spread of the virus. However, new techniques and technologies have also allowed for more in depth analysis of the innate and cell-mediated immunity of poultry to NDV. Gene profiling experiments have led to the discovery of novel host genes modulated immediately after infection. Differences in virus virulence alter host gene response patterns have been demonstrated. Furthermore, the timing and contributions of cell-mediated immune responses appear to decrease disease and transmission potential. In view of recent reports of vaccine failure from many countries on the ability of classical NDV vaccines to stop spread of disease, renewed interest in a more complete understanding of the global immune response of poultry to NDV will be critical to developing new control strategies and intervention programs for the future. (C) 2013 The Authors. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:447 / 453
页数:7
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