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Establishment of an indirect immunofluorescence assay for the detection of African swine fever virus antibodies
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作者 Wan Wang Zhenjiang Zhang +7 位作者 Weldu Tesfagaber Jiwen Zhang Fang Li Encheng Sun Lijie Tang Zhigao Bu yuanmao zhu Dongming Zhao 《Journal of Integrative Agriculture》 SCIE CSCD 2024年第1期228-238,共11页
African swine fever(ASF)continues to cause enormous economic loss to the global pig industry.Since there is no safe and effective vaccine,accurate and timely diagnosis of ASF is essential to implement control measures... African swine fever(ASF)continues to cause enormous economic loss to the global pig industry.Since there is no safe and effective vaccine,accurate and timely diagnosis of ASF is essential to implement control measures.Indirect immunofluorescence assay(IFA)is a gold standard serological method recommended by the World Organization for Animal Health(WOAH).In this study,we used primary fetal kidney cells to establish a wild boar cell line(BK2258)that supported the efficient replication of ASF virus(ASFV)SD/DY-I/21 and showed visible cytopathic effect(CPE).Moreover,using BK2258,we established a sensitive and specific IFA for ASFV antibody detection.To standardize and evaluate the performance of this assay,we used serum samples from pigs infected with the low virulent genotype I SD/DY-I/21 and genotype II HLJ/HRB1/20,and immunized with the vaccine candidate HLJ/18-7GD,field samples,and negative serum samples.The IFA reacted with the ASFV-positive sera and displayed bright fluorescence foci.There was no non-specific green fluorescence due to cellular senescence or other cell damage-causing factors.Compared to a commercial indirect enzyme-linked immunosorbent assay(iELISA),ASFV antibodies were detected 1–4 days earlier using our IFA.The detection limits of the IFA and iELISA for the same ASFV-antibody positive serum samples were 1:25,600 and 1:6,400,respectively,indicating that the IFA is more sensitive than iELISA.The newly established IFA was highly specific and did not cross-react with sera positive for six other important porcine pathogens(i.e.,Classical swine fever virus(CSFV),Porcine reproductive and respiratory syndrome virus(PRRSV),Porcme circovirus type 2(PCV2),Pseudorabies virus(PRV),Foot-and-Mouth disease virus type O(FMDV/O),and Porcine epidemic diarrhea virus(PEDV)).This study thus provides a sensitive,specific,and reliable detection method that is suitable for the serological diagnosis of ASF. 展开更多
关键词 African swine fever ANTIBODY IFA serological method
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A CRISPR/Cas12a-based platform for rapid on-site bovine viral diarrhea virus diagnostics
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作者 Meixi Wang Jitao Chang +11 位作者 Yuxin Han Chaonan Wang Songkang Qin Jun Wang Lulu Zhang yuanmao zhu Fei Xue Fang Wang Hongliang Chai Yulong Wang Xinjie Wang Xin Yin 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2024年第8期2872-2876,共5页
Bovine viral diarrhea virus(BVDV)is a positive-sense single-stranded RNA virus,belonging to the genus Pestivirus in the Flaviviridae family(Riitho et al.2020).Currently,BVDV is divided into 3 main genotypes,BVDV-1,BVD... Bovine viral diarrhea virus(BVDV)is a positive-sense single-stranded RNA virus,belonging to the genus Pestivirus in the Flaviviridae family(Riitho et al.2020).Currently,BVDV is divided into 3 main genotypes,BVDV-1,BVDV-2,and BVDV-3,based on the genetic differences in the 5′untranslated region(5′UTR)(Muasya et al.2022). 展开更多
关键词 BVDV CRISPR/Cas DIARRHEA
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Novel P22-monoclonal antibody based blocking ELISA for the detection of African swine fever virus antibodies in serum 被引量:2
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作者 Ghebremedhin Tsegay Weldu Tesfagaber +10 位作者 yuanmao zhu Xijun He Wan Wang Zhenjiang Zhang Encheng Sun Jinya Zhang Yuntao Guan Fang Li Renqiang Liu Zhigao Bu Dongming Zhao 《Biosafety and Health》 CSCD 2022年第4期234-243,共10页
African swine fever(ASF)is a highly infectious,transboundary viral disease of domestic and wild pigs,and is currently the most serious threat to world swine production,resulting in significant economic loss.In the abs... African swine fever(ASF)is a highly infectious,transboundary viral disease of domestic and wild pigs,and is currently the most serious threat to world swine production,resulting in significant economic loss.In the absence of vaccines and treatments,the control of the disease entirely depends on accurate and early diagnosis accompanied by the culling of infected pigs.Thus,a highly specific and sensitive diagnostic assay is required during an outbreak and surveillance of the disease.In this study,a highly sensitive,specific,rapid and repeatable P22-monoclonal antibody-based blocking enzyme-linked immunosorbent assay(bELISA)assay was developed for the detection of antibodies against genotype I and II African swine fever viruses(ASFVs).A total of 806 pig serum samples were tested to evaluate the performance of the diagnostic assay.To determine the PI(percent Inhibition)cut-off value,receiver-operating characteristic(ROC)analysis was applied.According to the ROC analysis of the data,98.10%specificity and 100%sensitivity were recorded when the threshold cut-off value of PI was established at 47%.In addition,the assay was able to detect ASFV antibodies as early as 9 days post-infection when serum samples from experimentally infected pigs were used.Taking all together,the results of the present study indicated that the P22-mAb based bELISA assay can be used for rapid and accurate detection of antibodies against ASFV,which could play a valuable role in the containment and prevention of ASFV as an alternative to other serological diagnostic methods.Also,this study will assist researchers to further investigate the immunogenic importance of P22 protein in ASFV infection. 展开更多
关键词 Monoclonal antibodies African swine fever Blocking ELISA DIAGNOSIS P22
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