Evaluation of Serological Tests for Detection of Antibodies against Lumpy Skin Disease Virus

被引:19
|
作者
Kresic, Nina [1 ]
Simic, Ivana [1 ]
Bedekovic, Tomislav [1 ]
Acinger-Rogic, Zaklin [2 ]
Lojkic, Ivana [1 ]
机构
[1] Croatian Vet Inst, Virol Dept, Zagreb, Croatia
[2] Minist Agr Vet & Food Safety Directorate, Zagreb, Croatia
关键词
ELISA; lumpy skin disease; serology assays; virus neutralization test; MECHANICAL TRANSMISSION; SPREAD;
D O I
10.1128/JCM.00348-20
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Lumpy skin disease (LSD) is an emerging, transboundary viral pox disease affecting cattle of all ages and breeds. The serological assay for monitoring immunity following vaccination is a virus neutralization test (VNT/OIE) that determines the neutralization index (NI). The first validated enzyme-linked immunosorbent assay (ELISA; IDVet) has become commercially available, facilitating large-scale serosurveillance for LSD. Although the VNT is labor intensive and time consuming, it is still the recommended test by the OIE. Thus, in this study, we modified the virus neutralization test by employing Madin-Darby bovine kidney (MDBK) cells. The qualitative results obtained with the modified method were compared to the qualitative results obtained by VNT/OIE and ELISA. We used blood sera received within a surveillance program for LSD in 2018. In total, 291 serum samples were tested using VNT/MDBK and ELISA. Of 291 samples, 80 samples were tested by VNT/OIE and used for comparison of the performances between VNT/MDBK and VNT/OIE. The compatibility of results obtained by VNT/MDBK and VNT/OIE resulted in a kappa index of 0.9 with overall proportion agreement of 0.96. Agreement between VNT/MDBK and VNT/OIE was achieved in 56 positive and 21 negative samples. The compatibility of results obtained by ELISA and VNT/MDBK were compared on 291 samples in total and resulted in a kappa index 0.834 with overall proportion agreement of 0.955. Agreement between ELISA and VNT/MDBK was achieved in 238 positive and 40 negative samples. The results obtained demonstrated a strong correlation between VNT/ MDBK and the other two methods, indicating the suitability of VNT/MDBK for the detection of the LSD virus-specific neutralizing antibodies.
引用
收藏
页数:7
相关论文
共 50 条
  • [31] Detection of vaccine-like strains of lumpy skin disease virus in outbreaks in Russia in 2017
    Kononov, Aleksandr
    Byadovskaya, Olga
    Kononova, Svetlana
    Yashin, Roman
    Zinyakov, Nikolay
    Mischenko, Vladimir
    Perevozchikova, Nataliya
    Sprygin, Alexander
    ARCHIVES OF VIROLOGY, 2019, 164 (06) : 1575 - 1585
  • [32] Mapping changes in the spatiotemporal distribution of lumpy skin disease virus
    Machado, Gustavo
    Korennoy, Fedor
    Alvarez, Julio
    Picasso-Risso, Catalina
    Perez, Andres
    VanderWaal, Kimberly
    TRANSBOUNDARY AND EMERGING DISEASES, 2019, 66 (05) : 2045 - 2057
  • [33] Detection of Clinical and Subclinical Lumpy Skin Disease Using Ear Notch Testing and Skin Biopsies
    Aerts, Laetitia
    Haegeman, Andy
    De Leeuw, Ilse
    Philips, Wannes
    Van Campe, Willem
    Behaeghel, Isabelle
    Mostin, Laurent
    De Clercq, Kris
    MICROORGANISMS, 2021, 9 (10)
  • [34] Genomic characterization of lumpy skin disease virus in southern China
    Ma, Jun
    Yuan, Yaoxian
    Shao, Jianwei
    Sun, Minghui
    He, Wei
    Chen, Jiming
    Liu, Quan
    TRANSBOUNDARY AND EMERGING DISEASES, 2022, 69 (05) : 2788 - 2799
  • [35] Evaluation of antibody titer and associated risk factors of goat pox vaccine against lumpy skin disease in crossbred buffaloes
    Abulaiti, Adili
    Naseer, Zahid
    Ahmed, Zulfiqar
    Tian, Shijun
    Liu, Wenju
    Shoaib, Muhammad
    Khan, Asghar
    Abdelrahman, Mohamed
    Kiani, Faisal Ayub
    Hussain, Abid
    Shaukat, Aftab
    Riaz, Umair
    Wang, Shujuan
    Hua, Jinling
    VETERINARY RESEARCH COMMUNICATIONS, 2025, 49 (02)
  • [36] Evaluation of different serological tests for the detection of antibodies against highly pathogenic avian influenza in experimentally infected ostriches (Struthio camelus)
    Toffan, Anna
    Olivier, Adriaan
    Mancin, Marzia
    Tuttoilmondo, Valentina
    Facco, Daniele
    Capua, Ilaria
    Terregino, Calogero
    AVIAN PATHOLOGY, 2010, 39 (01) : 11 - 15
  • [37] Alternative cell lines for the propagation of lumpy skin disease virus
    Binepal, YS
    Ongadi, FA
    Chepkwony, JC
    ONDERSTEPOORT JOURNAL OF VETERINARY RESEARCH, 2001, 68 (02) : 151 - 153
  • [38] Detection of lumpy skin disease virus in cattle using real-time polymerase chain reaction and serological diagnostic assays in different governorates in Egypt in 2017
    Zeedan, Gamil Sayed Gamil
    Mahmoudz, Ayman Hamid
    Abdalhamed, Abeer Mostafa
    Abd El-Razik, Khaled Abd El-Hamid
    Khafagi, Manal Hamdy
    Abou Zeina, Hale Abdoula Ahmed
    VETERINARY WORLD, 2019, 12 (07) : 1093 - 1100
  • [39] Assessing the probability of introduction and transmission of Lumpy skin disease virus within the United Kingdom
    Horigan, V.
    Beard, P. M.
    Roberts, H.
    Adkin, A.
    Gale, P.
    Batten, C. A.
    Kelly, L.
    MICROBIAL RISK ANALYSIS, 2018, 9 : 1 - 10
  • [40] Enhancing lumpy skin disease control: Effective competitive and indirect ELISAs for serological surveillance
    Baselli, Stefano
    Hoffmann, Bernd
    Milovanovic, Milovan
    Shtjefni, Valentin
    Ricchi, Matteo
    Sabino, Marcella
    Grazioli, Santina
    Brocchi, Emiliana
    Pezzoni, Giulia
    JOURNAL OF VIROLOGICAL METHODS, 2025, 333