Production and characterization of biologicals for disease diagnosis and pathological evaluation of elephant endotheliotropic herpesvirus (EEHV)

IF 2.2 4区 医学 Q3 BIOCHEMICAL RESEARCH METHODS
Kirtika Sharma , Karikalan Mathesh , Pracheta Janmeda , Sushmita Nautiyal , P. Sree Lakshmi , Athira Subash , Sonalika Mahajan , Ravikant Agrawal , Abhijit M. Pawde , Gaurav Kumar Sharma
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引用次数: 0

Abstract

Elephant endotheliotropic herpesviruses (EEHV) belong to the family Herpesviridae and cause a highly fatal hemorrhagic infection in elephants. EEHV poses a global threat to the already endangered elephant population. Since EEHV is a non-cultivable virus, there is a scarcity of specific diagnostics, therapeutics, and vaccines. In this study, our objective was to develop biologicals for diagnosis and pathological studies against the most prevalent EEHV1A/1B. We expressed two truncated fragments of the DNA polymerase, glycoprotein B (gB), and glycoprotein (gL) of EEHV in the prokaryotic system. Hyperimmune serum against the purified antigens was raised in rabbits and guinea pigs. We validated the reactivity of this hyperimmune serum using western blotting, ELISA, and immune-histochemistry on known positive infected tissues. Samples collected from 270 animals across various states in India were evaluated with these biologicals. The raised antibodies successfully demonstrated virus in immune-cytochemistry. Additionally, all known positive samples consistently exhibited significant inhibition in the OD values when used in the competitive format of ELISA across all four antigens when compared to the serum collected from known negative animals. An apparent sero-prevalence of 10 % was observed in the randomly collected samples. In summary, our study successfully developed and validated biologicals that will be invaluable for EEHV diagnosis and control.

用于大象内皮细胞疱疹病毒(EEHV)疾病诊断和病理评估的生物制品的生产和特征描述
大象内皮细胞疱疹病毒(EEHV)属于疱疹病毒科,可导致大象高度致命的出血性感染。EEHV 对已经濒临灭绝的大象种群构成全球性威胁。由于 EEHV 是一种不可培养的病毒,因此缺乏特异性诊断、治疗和疫苗。在这项研究中,我们的目标是针对最流行的 EEHV1A/1B 开发用于诊断和病理研究的生物制剂。我们在原核系统中表达了 EEHV 的 DNA 聚合酶、糖蛋白 B (gB) 和糖蛋白 (gL) 的两个截短片段。我们在兔子和豚鼠体内培养了针对纯化抗原的超免疫血清。我们使用免疫印迹法、酶联免疫吸附法和已知阳性感染组织的免疫组织化学方法验证了这种超免疫血清的反应性。我们用这些生物制品对从印度各邦 270 只动物身上采集的样本进行了评估。升高的抗体在免疫组化中成功地证明了病毒的存在。此外,与从已知阴性动物采集的血清相比,所有已知阳性样本在采用竞争性酶联免疫吸附法检测所有四种抗原时,其 OD 值均表现出明显的抑制作用。在随机采集的样本中观察到的明显血清阳性率为 10%。总之,我们的研究成功开发并验证了对 EEHV 诊断和控制有重要价值的生物制剂。
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来源期刊
CiteScore
5.80
自引率
0.00%
发文量
209
审稿时长
41 days
期刊介绍: The Journal of Virological Methods focuses on original, high quality research papers that describe novel and comprehensively tested methods which enhance human, animal, plant, bacterial or environmental virology and prions research and discovery. The methods may include, but not limited to, the study of: Viral components and morphology- Virus isolation, propagation and development of viral vectors- Viral pathogenesis, oncogenesis, vaccines and antivirals- Virus replication, host-pathogen interactions and responses- Virus transmission, prevention, control and treatment- Viral metagenomics and virome- Virus ecology, adaption and evolution- Applied virology such as nanotechnology- Viral diagnosis with novelty and comprehensive evaluation. We seek articles, systematic reviews, meta-analyses and laboratory protocols that include comprehensive technical details with statistical confirmations that provide validations against current best practice, international standards or quality assurance programs and which advance knowledge in virology leading to improved medical, veterinary or agricultural practices and management.
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