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鱼类疫苗中的疫苗佐剂作用显著:比较三种佐剂(Montanide ISA763A油佐剂、CpG/Poly I:C组合佐剂和水疱性口炎病毒糖蛋白佐剂)单独使用或与灭活的全鲑鱼α病毒抗原联合使用的情况。

Vaccine Adjuvants in Fish Vaccines Make a Difference: Comparing Three Adjuvants (Montanide ISA763A Oil, CpG/Poly I:C Combo and VHSV Glycoprotein) Alone or in Combination Formulated with an Inactivated Whole Salmonid Alphavirus Antigen.

作者信息

Thim Hanna L, Villoing Stéphane, McLoughlin Marian, Christie Karen Elina, Grove Søren, Frost Petter, Jørgensen Jorunn B

机构信息

Norwegian College of Fisheries Science, UiT The Arctic University of Norway, Tromsø N-9037, Norway.

MSD Animal Health Norway, Thormøhlensgate 55, Bergen N-5008, Norway.

出版信息

Vaccines (Basel). 2014 Mar 25;2(2):228-51. doi: 10.3390/vaccines2020228.

Abstract

Most commercial vaccines offered to the aquaculture industry include inactivated antigens (Ag) formulated in oil adjuvants. Safety concerns are related to the use of oil adjuvants in multivalent vaccines for fish, since adverse side effects (e.g., adhesions) can appear. Therefore, there is a request for vaccine formulations for which protection will be maintained or improved, while the risk of side effects is reduced. Here, by using an inactivated salmonid alphavirus (SAV) as the test Ag, the combined use of two Toll-like receptor (TLR) ligand adjuvants, CpG oligonucleotides (ODNs) and poly I:C, as well as a genetic adjuvant consisting of a DNA plasmid vector expressing the viral haemorrhagic septicaemia virus (VHSV) glycoprotein (G) was explored. VHSV-G DNA vaccine was intramuscularly injected in combination with intraperitoneal injection of either SAV Ag alone or combined with the oil adjuvant, Montanide ISA763, or the CpG/polyI:C combo. Adjuvant formulations were evaluated for their ability to boost immune responses and induce protection against SAV in Atlantic salmon, following cohabitation challenge. It was observed that CpG/polyI:C-based formulations generated the highest neutralizing antibody titres (nAbs) before challenge, which endured post challenge. nAb responses for VHSV G-DNA- and oil-adjuvanted formulations were marginal compared to the CpG/poly I:C treatment. Interestingly, heat-inactivated sera showed reduced nAb titres compared to their non-heated counterparts, which suggests a role of complement-mediated neutralization against SAV. Consistently elevated levels of innate antiviral immune genes in the CpG/polyI:C injected groups suggested a role of IFN-mediated responses. Co-delivery of the VHSV-G DNA construct with either CpG/polyI:C or oil-adjuvanted SAV vaccine generated higher CD4 responses in head kidney at 48 h compared to injection of this vector or SAV Ag alone. The results demonstrate that a combination of pattern recognizing receptor (PRR) ligands, such as CpG/polyI:C, increases both adaptive and innate responses and represents a promising adjuvant strategy for enhancing the protection of future viral vaccines.

摘要

提供给水产养殖业的大多数商业疫苗都包含用油性佐剂配制的灭活抗原(Ag)。安全问题与在鱼类多价疫苗中使用油性佐剂有关,因为可能会出现不良副作用(如粘连)。因此,需要一种疫苗配方,既能维持或提高保护效果,又能降低副作用风险。在此,以灭活的鲑鱼α病毒(SAV)作为测试抗原,探索了两种Toll样受体(TLR)配体佐剂——CpG寡核苷酸(ODN)和聚肌胞苷酸(poly I:C)的联合使用,以及一种由表达病毒性出血性败血症病毒(VHSV)糖蛋白(G)的DNA质粒载体组成的基因佐剂。VHSV-G DNA疫苗通过肌肉注射,同时腹腔注射单独的SAV抗原,或与油性佐剂Montanide ISA763,或CpG/polyI:C组合剂联合使用。在同居攻毒后,评估佐剂配方增强免疫反应和诱导大西洋鲑对SAV产生保护的能力。观察到基于CpG/polyI:C的配方在攻毒前产生了最高的中和抗体滴度(nAbs),并且在攻毒后仍保持。与CpG/poly I:C处理相比,VHSV G-DNA和油性佐剂配方的nAb反应微弱。有趣的是,热灭活血清与未加热的血清相比,nAb滴度降低,这表明补体介导的对SAV的中和作用。CpG/polyI:C注射组中先天性抗病毒免疫基因水平持续升高,表明干扰素介导的反应发挥了作用。与单独注射该载体或SAV抗原相比,VHSV-G DNA构建体与CpG/polyI:C或油性佐剂SAV疫苗共同递送在48小时时在头肾中产生了更高的CD4反应。结果表明,模式识别受体(PRR)配体(如CpG/polyI:C)的组合可增强适应性和先天性反应,是增强未来病毒疫苗保护效果的一种有前景的佐剂策略。

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