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Pouring petrol on the flames: Using oncolytic virotherapies to enhance tumour immunogenicity

机译:倒在火焰上的汽油:使用溶瘤病毒疗法来增强肿瘤免疫原性

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摘要

Oncolytic viruses possess the ability to infect, replicate and lyse malignantly transformed tumour cells. This oncolytic activity amplifies the therapeutic advantage and induces a form of immunogenic cell death, characterized by increased CD8+ T‐cell infiltration into the tumour microenvironment. This important feature of oncolytic viruses can result in the warming up of immunologically ‘cold’ tumour types, presenting the enticing possibility that oncolytic virus treatment combined with immunotherapies may enhance efficacy. In this review, we assess some of the most promising candidates that might be used for oncolytic virotherapy: immunotherapy combinations. We assess their potential as separate agents or as agents combined into a single therapy, where the immunotherapy is encoded within the genome of the oncolytic virus. The development of such advanced agents will require increasingly sophisticated model systems for their preclinical assessment and evaluation. In vivo rodent model systems are fraught with limitations in this regard. Oncolytic viruses replicate selectively within human cells and therefore require human xenografts in immune‐deficient mice for their evaluation. However, the use of immune‐deficient rodent models hinders the ability to study immune responses against any immunomodulatory transgenes engineered within the viral genome and expressed within the tumour microenvironment. There has therefore been a shift towards the use of more sophisticated ex vivo patient‐derived model systems based on organoids and explant co‐cultures with immune cells, which may be more predictive of efficacy than contrived and artificial animal models. We review the best of those model systems here.
机译:溶解病毒有能力发生感染,复制和莱斯佩转化的肿瘤细胞。这种溶瘤活动放大了治疗优势并诱导一种免疫原性细胞死亡的形式,其特征在于CD8增加+ T细胞浸润进入肿瘤微环境。这个溶瘤病毒的重要特征可能导致抗免疫的热身'冷'肿瘤类型,呈现诱人的可能性病毒治疗与免疫疗法相结合可能会增强疗效。在这篇评论中,我们评估可能用于淫荡的最有希望的候选人病毒治疗:免疫疗法组合。我们将其潜力评估为单独的代理商或作为药剂组合成单一疗法,其中免疫疗法在其中编码溶瘤病毒的基因组。这些先进代理人的发展将需要越来越复杂的模型系统,用于其临床前评估和评估。体内啮齿动物模型系统充满了局限性。在人体细胞内选择性地复制溶溶解的病毒,因此需要人类卵黄移植物在免疫缺乏小鼠中的评价。但是,使用免疫缺陷啮齿动物模型阻碍了研究免疫反应的能力针对在病毒基因组内工程化的任何免疫调节转基因并表达在肿瘤微环境中。因此,朝着使用的转变基于有机体和基于有机体的exvivo患者衍生模型系统更复杂用免疫细胞的外植体共培养物,这可能更加预测功效而不是创作和人造动物模型。我们回顾最好的模型系统这里。

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