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一种减毒疱疹病毒载体候选疫苗可诱导针对高度保守的猪繁殖与呼吸综合征病毒 M 和 NSP5 蛋白的 T 细胞应答,但这些应答无法控制感染。

An attenuated herpesvirus vectored vaccine candidate induces T-cell responses against highly conserved porcine reproductive and respiratory syndrome virus M and NSP5 proteins that are unable to control infection.

机构信息

The Pirbright Institute, Woking, United Kingdom.

The Vaccine Group Ltd., Plymouth, United Kingdom.

出版信息

Front Immunol. 2023 Aug 3;14:1201973. doi: 10.3389/fimmu.2023.1201973. eCollection 2023.

Abstract

Porcine reproductive and respiratory syndrome virus (PRRSV) remains a leading cause of economic loss in pig farming worldwide. Existing commercial vaccines, all based on modified live or inactivated PRRSV, fail to provide effective immunity against the highly diverse circulating strains of both PRRSV-1 and PRRSV-2. Therefore, there is an urgent need to develop more effective and broadly active PRRSV vaccines. In the absence of neutralizing antibodies, T cells are thought to play a central role in controlling PRRSV infection. Herpesvirus-based vectors are novel vaccine platforms capable of inducing high levels of T cells against encoded heterologous antigens. Therefore, the aim of this study was to assess the immunogenicity and efficacy of an attenuated herpesvirus-based vector (bovine herpesvirus-4; BoHV-4) expressing a fusion protein comprising two well-characterized PRRSV-1 T-cell antigens (M and NSP5). Prime-boost immunization of pigs with BoHV-4 expressing the M and NSP5 fusion protein (vector designated BoHV-4-M-NSP5) induced strong IFN-γ responses, as assessed by ELISpot assays of peripheral blood mononuclear cells (PBMC) stimulated with a pool of peptides representing PRRSV-1 M and NSP5. The responses were closely mirrored by spontaneous IFN-γ release from unstimulated cells, albeit at lower levels. A lower frequency of M and NSP5 specific IFN-γ responding cells was induced following a single dose of BoHV-4-M-NSP5 vector. Restimulation using M and NSP5 peptides from PRRSV-2 demonstrated a high level of cross-reactivity. Vaccination with BoHV-4-M-NSP5 did not affect viral loads in either the blood or lungs following challenge with the two heterologous PRRSV-1 strains. However, the BoHV-4-M-NSP5 prime-boost vaccination showed a marked trend toward reduced lung pathology following PRRSV-1 challenge. The limited effect of T cells on PRRSV-1 viral load was further examined by analyzing local and circulating T-cell responses using intracellular cytokine staining and proliferation assays. The results from this study suggest that vaccine-primed T-cell responses may have helped in the control of PRRSV-1 associated tissue damage, but had a minimal, if any, effect on controlling PRRSV-1 viral loads. Together, these results indicate that future efforts to develop effective PRRSV vaccines should focus on achieving a balanced T-cell and antibody response.

摘要

猪繁殖与呼吸综合征病毒(PRRSV)仍然是全球养猪业经济损失的主要原因。现有的商业疫苗均基于改良活疫苗或灭活疫苗,但不能针对 PRRSV-1 和 PRRSV-2 的高度多样化流行株提供有效免疫。因此,迫切需要开发更有效和广泛有效的 PRRSV 疫苗。在没有中和抗体的情况下,T 细胞被认为在控制 PRRSV 感染中发挥核心作用。疱疹病毒载体是一种新型疫苗平台,能够诱导针对编码异源抗原的高水平 T 细胞。因此,本研究旨在评估表达由两种经过充分表征的 PRRSV-1 T 细胞抗原(M 和 NSP5)组成的融合蛋白的减毒疱疹病毒载体(牛疱疹病毒-4;BoHV-4)的免疫原性和功效。用表达 M 和 NSP5 融合蛋白的 BoHV-4(命名为 BoHV-4-M-NSP5)对猪进行初次-加强免疫,通过 ELISpot 检测外周血单个核细胞(PBMC)对 PRRSV-1 M 和 NSP5 肽池的刺激,诱导强烈的 IFN-γ 反应。刺激细胞自发释放 IFN-γ 与 ELISpot 结果非常吻合,尽管水平较低。单次剂量的 BoHV-4-M-NSP5 载体诱导的 M 和 NSP5 特异性 IFN-γ 反应细胞频率较低。用 PRRSV-2 的 M 和 NSP5 肽进行再刺激显示出高度的交叉反应性。用 BoHV-4-M-NSP5 疫苗接种不会影响两种异源 PRRSV-1 株攻毒后血液或肺部的病毒载量。然而,BoHV-4-M-NSP5 初次-加强免疫接种显示出在 PRRSV-1 攻毒后肺部病理明显减轻的趋势。通过使用细胞内细胞因子染色和增殖测定分析局部和循环 T 细胞反应,进一步研究了 T 细胞对 PRRSV-1 病毒载量的有限影响。本研究结果表明,疫苗诱导的 T 细胞反应可能有助于控制 PRRSV-1 相关的组织损伤,但对控制 PRRSV-1 病毒载量的影响很小,如果有的话。总之,这些结果表明,未来开发有效 PRRSV 疫苗的努力应侧重于实现平衡的 T 细胞和抗体反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e08/10436000/f4e0cc2fa160/fimmu-14-1201973-g001.jpg

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