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用于林奇综合征个体化治疗的癌症疫苗方法。

A cancer vaccine approach for personalized treatment of Lynch Syndrome.

机构信息

MedGenome Labs Ltd., Bangalore, India.

KCHRC, Muni Seva Ashram, Goraj, Gujarat, India.

出版信息

Sci Rep. 2018 Aug 14;8(1):12122. doi: 10.1038/s41598-018-30466-x.

Abstract

Lynch syndrome (LS) is a cancer predisposition disorder wherein patients have a 70-80% lifetime risk of developing colorectal cancers (CRC). Finding germline mutations in predisposing genes allows for risk assessment of CRC development. Here we report a germline heterozygous frame-shift mutation in the mismatch repair MLH1 gene which was identified in members of two unrelated LS families. Since defects in DNA mismatch repair genes generate frame-shift mutations giving rise to highly immunogenic neoepitopes, we postulated that vaccination with these mutant peptide antigens could offer promising treatment options to LS patients. To this end we performed whole-exome and RNA seq analysis on the blood and tumour samples from an LS-CRC patient, and used our proprietary neoepitope prioritization pipeline OncoPeptVAC to select peptides, and confirm their immunogenicity in an ex vivo CD8 T cell activation assay. Three neoepitopes derived from the tumour of this patient elicited a potent CD8 T cell response. Furthermore, analysis of the tumour-associated immune infiltrate revealed CD8 T cells expressing low levels of activation markers, suggesting mechanisms of immune suppression at play in this relapsed tumour. Taken together, our study paves the way towards development of a cancer vaccine to treat or delay the onset/relapse of LS-CRC.

摘要

林奇综合征(LS)是一种癌症易感性疾病,患者一生中发生结直肠癌(CRC)的风险为 70-80%。在易感性基因中发现种系突变可评估 CRC 发展的风险。在这里,我们报告了两个无关联 LS 家族成员中存在错配修复 MLH1 基因的种系杂合框移突变。由于 DNA 错配修复基因的缺陷会产生框移突变,从而产生高度免疫原性的新表位,我们推测用这些突变肽抗原进行疫苗接种可为 LS 患者提供有前景的治疗选择。为此,我们对 LS-CRC 患者的血液和肿瘤样本进行了全外显子和 RNA seq 分析,并使用我们专有的新表位优先级排序管道 OncoPeptVAC 选择肽,并在体外 CD8 T 细胞激活试验中确认其免疫原性。从该患者肿瘤中衍生的三个新表位引发了强烈的 CD8 T 细胞反应。此外,对肿瘤相关免疫浸润的分析显示 CD8 T 细胞表达低水平的激活标志物,这表明在这种复发肿瘤中存在免疫抑制机制。总之,我们的研究为开发治疗或延迟 LS-CRC 发病/复发的癌症疫苗铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11ba/6092430/5127513d4c49/41598_2018_30466_Fig1_HTML.jpg

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