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Comprehensive mutanome analysis of Lewis lung cancer reveals immunogenic neoantigens for therapeutic vaccines

机译:Lewis肺癌的综合脱节分析显示治疗疫苗的免疫原性新抗原

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Personalized neoantigen vaccines are capable of eliciting vigorous T-cell responses and have been demonstrated to achieve striking therapeutic effects against cancer. Here we performed comprehensive mutanome analysis of the mouse Lewis lung cancer cells to identify tumor neoantigens followed by prediction of their MHC affinity and immunogenicity. We adopted a strategy that enables us to select neoantigens that were predicted to have high affinity to both MHC I and MHC II. Ten neoantigens were selected to synthesize peptide vaccines and tested in vivo for immunogenicity. Four neoantigen peptide vaccines were found to elicit robust immune reactivity and were further examined for tumor inhibition in mice with xenografted LLC tumors. Two neoantigen peptide vaccines showed significant inhibition on tumor growth and prolonged the survival of tumor-bearing mice. Our studies explored the neoantigen peptide vaccines to treat lung cancer and provide rationale for the optimization of tumor neoantigen selection for therapeutic vaccines. (C) 2020 Elsevier Inc. All rights reserved.
机译:个性化的新奥氏菌疫苗能够引发剧烈的T细胞反应,并已被证明以实现针对癌症的引人注目的治疗效果。在这里,我们对小鼠Lewis肺癌细胞进行了综合的脱节分析,以鉴定肿瘤新奥尼斯,然后预测其MHC亲和力和免疫原性。我们采用了一种策略,使我们能够选择预计对MHC I和MHC II具有高亲和力的新抗原。选择十种NeoAntigens以合成肽疫苗并在体内测试以进行免疫原性。发现四种新洲肽肽疫苗引发鲁棒的免疫反应性,并进一步检查用异种移植物流量的LLC肿瘤小鼠肿瘤抑制作用。两种新洲肽疫苗对肿瘤生长显示出显着的抑制,延长了肿瘤小鼠的存活。我们的研究探索了Neoantigen肽疫苗治疗肺癌,并提供了用于优化治疗疫苗的肿瘤Neoantigen选择的理由。 (c)2020 Elsevier Inc.保留所有权利。

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