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采用一种经证明对高分辨率表位图谱有效的初免-加强疫苗接种策略来表征生存素难以捉摸的免疫原性。

Using a Prime-Boost Vaccination Strategy That Proved Effective for High Resolution Epitope Mapping to Characterize the Elusive Immunogenicity of Survivin.

作者信息

Mould Robert C, van Vloten Jacob P, AuYeung Amanda W K, Walsh Scott R, de Jong Jondavid, Susta Leonardo, Mutsaers Anthony J, Petrik James J, Wood Geoffrey A, Wootton Sarah K, Karimi Khalil, Bridle Byram W

机构信息

Department of Pathobiology, University of Guelph, Guelph, ON N1G 2W1, Canada.

McMaster Immunology Research Centre, McMaster University Hamilton, Hamilton, ON L8S 3L8, Canada.

出版信息

Cancers (Basel). 2021 Dec 14;13(24):6270. doi: 10.3390/cancers13246270.

Abstract

Survivin is a member of the inhibitor of apoptosis family of proteins and has been reported to be highly expressed in a variety of cancer types, making it a high priority target for cancer vaccination. We previously described a heterologous prime-boost strategy using a replication-deficient adenovirus, followed by an oncolytic rhabdovirus that generates unprecedented antigen-specific T cell responses. We engineered each vector to express a mutated version of full-length murine survivin. We first sought to uncover the complete epitope map for survivin-specific T cell responses in C57BL/6 and BALB/c mice by flow cytometry. However, no T cell responses were detected by intracellular cytokine staining after re-stimulation of T cells. Survivin has been found to be expressed by activated T cells, which could theoretically cause T cell-mediated killing of activated T cells, known as fratricide. We were unable to recapitulate this phenomenon in experiments. Interestingly, the inactivated survivin construct has been previously shown to directly kill tumor cells in vitro. However, there was no evidence in our models of induction of death in antigen-presenting cells due to treatment with a survivin-expressing vector. Using the same recombinant virus-vectored prime-boost strategy targeting the poorly immunogenic enhanced green fluorescent protein proved to be a highly sensitive method for mapping T cell epitopes, particularly in the context of identifying novel epitopes recognized by CD4 T cells. Overall, these results suggested there may be unusually robust tolerance to survivin in commonly used mouse strains that cannot be broken, even when using a particularly potent vaccination platform. However, the vaccination method shows great promise as a strategy for identifying novel and subdominant T cell epitopes.

摘要

生存素是凋亡抑制蛋白家族的成员,据报道在多种癌症类型中高表达,这使其成为癌症疫苗接种的首要靶点。我们之前描述了一种异源初免-加强策略,先使用复制缺陷型腺病毒,随后使用溶瘤性弹状病毒,该策略可产生前所未有的抗原特异性T细胞反应。我们对每个载体进行工程改造,使其表达全长小鼠生存素的突变版本。我们首先试图通过流式细胞术揭示C57BL/6和BALB/c小鼠中生存素特异性T细胞反应的完整表位图谱。然而,在重新刺激T细胞后,通过细胞内细胞因子染色未检测到T细胞反应。已发现激活的T细胞表达生存素,理论上这可能导致T细胞介导的激活T细胞杀伤,即所谓的自相残杀。我们在实验中无法重现这一现象。有趣的是,之前已证明失活的生存素构建体在体外可直接杀死肿瘤细胞。然而,在我们的模型中,没有证据表明用表达生存素的载体处理会导致抗原呈递细胞死亡。使用相同的重组病毒载体初免-加强策略靶向免疫原性较差的增强型绿色荧光蛋白,被证明是一种高度灵敏的T细胞表位图谱绘制方法,特别是在鉴定CD4 T细胞识别的新表位方面。总体而言,这些结果表明,在常用的小鼠品系中,可能对生存素有异常强大的耐受性,即使使用特别有效的疫苗接种平台也无法打破这种耐受性。然而,这种疫苗接种方法作为一种鉴定新的和隐性T细胞表位的策略显示出巨大的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2f67/8699342/8151e797ea2e/cancers-13-06270-g001a.jpg

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