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埃及新型鹅细小病毒在自然感染鸭免疫器官中的研究:二代测序、免疫组化信号以及采用多重对应和层次聚类方法对病理变化的比较分析

Egyptian Novel Goose Parvovirus in Immune Organs of Naturally Infected Ducks: Next-Generation Sequencing, Immunohistochemical Signals, and Comparative Analysis of Pathological Changes Using Multiple Correspondence and Hierarchical Clustering Approach.

作者信息

Lebdah Mohamed A, Eid Amal A M, ElBakrey Reham M, El-Gohary Abd Elgalil, Seadawy Mohamed G, Mousa Mohamed R, Gouda Hagar F, Goda Nehal I A, El-Hosseny Mostafa F, El-Tahlawy Ahmed S, Sami Rokayya, Al-Eisa Rasha A, Helal Sarah S

机构信息

Department of Avian and Rabbit Medicine, Faculty of Veterinary Medicine, Zagazig University, Zagazig 44511, Egypt.

Department of Poultry and Rabbit Diseases, Faculty of Veterinary Medicine, Kafrelsheikh University, Kafrelsheikh 33511, Egypt.

出版信息

Viruses. 2025 Jan 13;17(1):96. doi: 10.3390/v17010096.

Abstract

The present study aims to better understand the nature of currently circulating GPV strains and their pathological impact on the immune system during natural outbreaks among different duck breeds in Egypt. For this purpose, 99 ducks (25 flocks) of different breeds, aged 14-75 days, were clinically examined, and 75 tissue pools from the thymus, bursa of Fabricius, and spleen were submitted for virus detection and identification. Clinical and postmortem findings were suggestive of GPV infection. Concerning the immune system organs, atrophy in the thymus (60.6%), bursa (45.5%), and spleen (38.3%) was the most common gross lesion. Microscopically, the pathological impact of the virus was exhibited by a necrotic thymic cortex with Hassall's corpuscle disintegration, the disappearance of normal bursal histological morphology accompanied by atrophied follicles and lymphocytic depletion, and apoptosis of B-lymphocytes in lymphoid follicles of the spleen. Furthermore, immunohistochemical examination revealed positive signals of the parvovirus detected in thymic lymphocytes in the cortex, bursa-dependent lymphoid follicle of the medulla, and diffuse positive expression of viral antigens in the spleen. GPV was detected in ducks using polymerase chain reaction, with the highest percentage of positive detection in the bursa of Fabricius (76%). Next-generation sequencing and phylogenetic analysis revealed that the detected virus was a variant of GPV, globally named novel GPV (NGPV), and closely related to Chinese NGPV isolates. To our knowledge, the current study is pioneering to address the immunopathological impact of NGPV among naturally infected ducks confirmed with full genome sequencing and immunohistochemical identification worldwide.

摘要

本研究旨在更好地了解当前埃及不同鸭品种自然爆发期间流行的鹅细小病毒(GPV)毒株的特性及其对免疫系统的病理影响。为此,对99只不同品种、年龄在14至75天的鸭子(25个鸭群)进行了临床检查,并提交了75份来自胸腺、法氏囊和脾脏的组织样本进行病毒检测和鉴定。临床和尸检结果提示为GPV感染。关于免疫系统器官,胸腺(60.6%)、法氏囊(45.5%)和脾脏(38.3%)萎缩是最常见的大体病变。在显微镜下,病毒的病理影响表现为坏死的胸腺皮质伴哈索尔小体崩解、正常法氏囊组织学形态消失,伴有卵泡萎缩和淋巴细胞耗竭,以及脾脏淋巴滤泡中B淋巴细胞凋亡。此外,免疫组织化学检查显示,在皮质胸腺淋巴细胞、髓质的法氏囊依赖性淋巴滤泡中检测到细小病毒的阳性信号,且病毒抗原在脾脏中呈弥漫性阳性表达。采用聚合酶链反应在鸭子中检测到GPV,在法氏囊中阳性检出率最高(76%)。二代测序和系统发育分析表明,检测到的病毒是GPV的一个变种,全球命名为新型GPV(NGPV),与中国的NGPV分离株密切相关。据我们所知,本研究率先在全球范围内通过全基因组测序和免疫组织化学鉴定,探讨了NGPV对自然感染鸭子的免疫病理影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f8b/11769075/3dcb517d3ba8/viruses-17-00096-g001.jpg

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