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水牛头颈部皮下气肿的诊治

Neutralizing antibodies to bovine and bubaline alphaherpesviruses in water buffaloes (Bubalus bubalis).

机构信息

Programa de Pos-Graduacao em Ciencias Veterinarias, Faculdade de Medicina Veterinaria, Universidade Federal do Rio Grande do Sul, Av. Bento Gonçalves 9090, Porto Alegre, RS, CEP: 91540-000, Brazil.

Equipe de Virologia, Instituto de Pesquisas Veterinárias Desidério Finamor (IPVDF), Divisão de Defesa Sanitária Animal, SEAPDR, Governo do Estado do Rio Grande do Sul, Estrada do Conde 6000, Eldorado do Sul, RS, CEP: 92990-000, Brazil.

出版信息

Braz J Microbiol. 2023 Jun;54(2):1231-1237. doi: 10.1007/s42770-023-00930-6. Epub 2023 Mar 10.

Abstract

Water buffaloes (Bubalus bubalis) have been introduced in many regions of the world as a source of animal protein. In many instances, bubaline cattle are reared close to or mixed with bovine or zebuine cattle. However, little is known about infectious diseases of bubaline and the interactions that may arise involving the microbiota of those species. Alphaherpesviruses of ruminants (bovine alphaherpesviruses types 1 and 5, BoHV-1, BoHV-5; bubaline alphaherpesvirus 1, BuHV-1) are highly cross-reactive in serological assays performed with bovine or zebuine sera. However, the profile of reactivity of bubaline cattle sera to alphaherpesviruses remains unknown. As such, it is not known which virus strain (or strains) would be most appropriate to be used as the challenge virus in the laboratory in search for alphaherpesvirus-neutralizing antibodies. In this study, the profile of neutralizing antibodies to alphaherpesviruses in bubaline sera was determined against different types/subtypes of bovine and bubaline alphaherpesviruses. Sera (n=339) were screened in a 24-h serum neutralization test (SN) against 100 TCID of each of the challenge viruses. From those, 159 (46.9 %) neutralized at least one of the viruses assayed; 131 (38.6%) sera neutralized the three viral strains used for screening. The viral strain that was neutralized by the largest number of sera was BoHV-5b A663 (149/159; 93.7%). A few sera neutralized only one of the challenge viruses: four sera neutralized BoHV-1 LA only; another neutralized BoHV-5 A663 only and four others neutralized BuHV-1 b6 only. SN testing with two additional strains gave rise to similar results, where maximum sensitivity (defined here as the largest number of sera that neutralized the challenge viruses) was obtained by adding positive results attained with three of the challenge strains. Differences in neutralizing antibody titers were not significant to allow inferences on which would be the most likely virus that induced the antibody responses detected here.

摘要

水牛头(Bubalus bubalis)已被引入世界许多地区,作为动物蛋白质的来源。在许多情况下,水牛牛被饲养在靠近或与牛或瘤牛混合的地方。然而,对于水牛的传染病以及这些物种的微生物群可能产生的相互作用知之甚少。反刍动物的α疱疹病毒(牛α疱疹病毒 1 型和 5 型,BoHV-1、BoHV-5;水牛α疱疹病毒 1 型,BuHV-1)在使用牛或瘤牛血清进行的血清学检测中高度交叉反应。然而,水牛牛血清对α疱疹病毒的反应谱尚不清楚。因此,尚不清楚哪种病毒株(或株)最适合作为实验室中的挑战病毒,以寻找α疱疹病毒中和抗体。在这项研究中,测定了水牛血清中针对不同类型/亚型的牛和水牛α疱疹病毒的中和抗体谱。用 SN 法检测了 339 份血清对每种挑战病毒 100TCID 的中和作用。其中,有 159 份(46.9%)血清至少中和了一种检测的病毒;131 份(38.6%)血清中和了用于筛选的三种病毒株。被最多数量的血清中和的病毒株是 BoHV-5b A663(149/159;93.7%)。有少数血清仅中和一种挑战病毒:4 份血清仅中和 BoHV-1 LA;另一份仅中和 BoHV-5 A663,还有 4 份仅中和 BuHV-1 b6。用另外两种毒株进行 SN 检测得出了相似的结果,其中最大的敏感性(定义为中和挑战病毒的最大血清数量)是通过增加三种挑战毒株的阳性结果获得的。中和抗体滴度的差异没有显著性,无法推断出最有可能诱导此处检测到的抗体反应的病毒。

相似文献

1
Neutralizing antibodies to bovine and bubaline alphaherpesviruses in water buffaloes (Bubalus bubalis).水牛头颈部皮下气肿的诊治
Braz J Microbiol. 2023 Jun;54(2):1231-1237. doi: 10.1007/s42770-023-00930-6. Epub 2023 Mar 10.

本文引用的文献

1
ICTV Virus Taxonomy Profile: 2021.ICTV 病毒分类学简介:2021 年。
J Gen Virol. 2021 Oct;102(10). doi: 10.1099/jgv.0.001673.

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