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油包水乳剂在鱼类疫苗中的应用挑战:一种针对塞内加尔鳎感染的贝纳氏虫病的灭活佐剂疫苗的实验研究。

Water-in-oil adjuvant challenges in fish vaccination: An experimental inactivated adjuvanted vaccine against betanodavirus infection in Senegalese sole.

机构信息

Department of Cell Biology and Histology, Faculty of Biology, Immunobiology for Aquaculture Group, Regional Campus of International Excellence "Campus Mare Nostrum", University of Murcia, Murcia, Spain.

Departamento de Microbiología y Parasitología, Campus Vida, Instituto de Acuicultura, Universidade de Santiago de Compostela, Santiago de Compostela, Spain.

出版信息

J Fish Dis. 2024 Jul;47(7):e13945. doi: 10.1111/jfd.13945. Epub 2024 Mar 24.

Abstract

The extensive growth of intensive fish farming has led to a massive spread of infectious diseases. Nervous necrosis virus (NNV) is the causative agent of the viral encephalo- and retinopathy disease which has become a major threat for fish farming all over the globe. The devastating mortality rates recorded in disease outbreaks, especially when infected specimens are at early stages of development, have a high economic impact on the sector. Currently, vaccines are the most cost-effective preventing tool in the fight against viruses. Inactivated vaccines have the advantage of simplicity in their development at the same time as present the antigen in a similar manner than the natural infection in the host. Nevertheless, they usually trigger weaker immune responses needing adjuvants to boost their effectiveness. In this work, we have intraperitoneally vaccinated Senegalese sole juveniles (Solea senegalensis) with a previously designed inactivated vaccine against NNV based on binary ethylenimine (BEI), mixed or not with an oil-adjuvant. Our results demonstrated the potential activation of different immune pathways when the vaccine was administered alone compared to the oil-adjuvanted vaccine, both resulting in an equivalent partial improvement in survival following a NNV challenge. However, whilst the vaccine alone led to a significant increase in specific antibodies, in the adjuvanted version those antibodies were kept basal although with a slight improvement in their neutralization capacity. At transcriptional level, neither vaccine (adjuvanted or not) triggered the immune system activation during the vaccination period. However, after NNV infection, the BEI-inactivated vaccines alone and oil-adjuvanted both elicited the stimulation of antiviral responsive genes (rtp3, herc4), antigen presentation molecules (mhcii) and T-cell markers (cd8a) in the head-kidney. Additionally, the oil-adjuvanted vaccine appears to stimulate mediator cytokines (il6) and B-cell markers (ight and ighm). Surprisingly, when the adjuvant was administered alone, fish showed the highest survival rates concomitantly with a lack of NNV-IgM production, pointing to the possible induction of different immune pathways than the B-cell responses via antibodies by the adjuvant. Since this combined vaccine did not succeed in the full extension of protection against the pathogen, further studies should be performed focusing on unravelling the molecular mechanisms through which adjuvants trigger the immune response, both independently and when added to a vaccine antigen.

摘要

集约化水产养殖的广泛发展导致了传染病的大规模传播。神经坏死病毒(NNV)是病毒性脑和视网膜疾病的病原体,已成为全球水产养殖的主要威胁。在疾病爆发时记录的破坏性死亡率,特别是在感染标本处于早期发育阶段时,对该行业造成了重大的经济影响。目前,疫苗是对抗病毒最具成本效益的预防工具。灭活疫苗在开发过程中具有简单性的优势,同时以与宿主自然感染相似的方式呈现抗原。然而,它们通常会引发较弱的免疫反应,需要佐剂来提高其效力。在这项工作中,我们通过腹腔内接种了先前设计的基于双乙烯亚胺(BEI)的灭活疫苗,单独或与油佐剂混合,对塞内加尔比目鱼幼鱼(Solea senegalensis)进行了免疫。我们的结果表明,与油佐剂疫苗相比,单独接种疫苗时可以激活不同的免疫途径,这两种方法都导致在 NNV 挑战后存活率有部分等效提高。然而,虽然单独使用疫苗会导致特异性抗体显著增加,但在佐剂版本中,尽管其中和能力略有提高,但这些抗体仍保持基础水平。在转录水平上,无论是单独的疫苗(佐剂或非佐剂)都没有在接种期间触发免疫系统的激活。然而,在 NNV 感染后,单独的 BEI 灭活疫苗和油佐剂都能刺激头肾中的抗病毒反应基因(rtp3、herc4)、抗原呈递分子(mhcii)和 T 细胞标记物(cd8a)的刺激。此外,油佐剂疫苗似乎还能刺激介质细胞因子(il6)和 B 细胞标记物(ight 和 ighm)。令人惊讶的是,当单独使用佐剂时,鱼表现出最高的存活率,同时缺乏 NNV-IgM 产生,这表明佐剂可能通过 B 细胞反应以外的途径诱导不同的免疫反应,而不是通过抗体。由于这种联合疫苗未能完全扩展对病原体的保护,因此应进一步进行研究,重点研究佐剂通过独立或与疫苗抗原一起触发免疫反应的分子机制。

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