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An unbiased approach to defining bona fide cancer neoepitopes that elicit immune-mediated cancer rejection

机译:一种无偏见的方法,可以定义真正癌症的癌症癌症,从而引发免疫介导的癌症抑制

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Identification of neoepitopes that are effective in cancer therapy is a major challenge in creating cancer vaccines. Here, using an entirely unbiased approach, we queried all possible neoepitopes in a mouse cancer model and asked which of those are effective in mediating tumor rejection and, independently, in eliciting a measurable CD8 response. This analysis uncovered a large trove of effective anticancer neoepitopes that have strikingly different properties from conventional epitopes and suggested an algorithm to predict them. It also revealed that our current methods of prediction discard the overwhelming majority of true anticancer neoepitopes. These results from a single mouse model were validated in another antigenically distinct mouse cancer model and are consistent with data reported in human studies. Structural modeling showed how the MHC I–presented neoepitopes had an altered conformation, higher stability, or increased exposure to T cell receptors as compared with the unmutated counterparts. T cells elicited by the active neoepitopes identified here demonstrated a stem-like early dysfunctional phenotype associated with effective responses against viruses and tumors of transgenic mice. These abundant anticancer neoepitopes, which have not been tested in human studies thus far, can be exploited for generation of personalized human cancer vaccines.
机译:鉴定癌症疗法有效的新患者是产生癌症疫苗的主要挑战。这里,使用完全无偏见的方法,我们在小鼠癌症模型中询问了所有可能的新脑电图,并询问哪些在介导肿瘤排斥和独立方面有效地引发可测量的CD8反应。该分析揭示了大量的有效抗癌Neoopitopes,其具有来自常规表位的尖锐不同的性质,并提出了一种预测它们的算法。它还透露,我们目前的预测方法丢弃了绝大多数真正的抗癌新患者。这些来自单一小鼠模型的结果在另一个抗原性不同的小鼠癌症模型中验证,并与人类研究中报道的数据一致。与未传养的对应物相比,结构模型显示了MHC I呈现的Neoepitope如何具有改变的构象,更高的稳定性或增加对T细胞受体的暴露。这里鉴定的活性新脑引起的T细胞显示出与对转基因小鼠病毒和肿瘤的有效反应相关的干燥的早期功能障碍表型。这些丰富的抗癌新患者尚未在迄今为止在人类研究中进行过度测试,可以利用为种类的人类癌症疫苗产生。

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