B138: apobec3b诱导的异位文库肿瘤细胞疫苗和免疫检查点阻断的肿瘤免疫治疗

R. Vile, Laura Evgin, T. Kottke, M. Schuelke, C. Driscoll, Amanda L. Huff, Jill Thompson, Amy M. Molan, R. Harris, J. Pulido, Phonphimon Wongthida
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A freeze-thawed whole tumor cell vaccine prepared from B16 melanoma cells stably overexpressing human APOBEC3B treated established subcutaneous parental B16 tumors and, when combined with PD-1 checkpoint blockade, cured between 75%-100% of mice. T-cells from mice treated with the vaccine and anti-PD1 produced high levels of IFN-γ when restimulated with parental unmodified B16 melanoma cells in vitro. Whole-genome sequencing of B16APOBEC3B overexpressing cells identified 301 C to T or G to A missense mutations unique to the APOBEC3B line. Using an in silico MHC binding affinity algorithm, we identified and experimentally validated a short list of 10 APOBEC3B- induced heteroclitic peptides. We have also shown that this approach can be extended to an orthotopic brainstem model of high grade glioma. 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引用次数: 0

摘要

我们之前已经证明,一个基于水泡性口炎病毒的cDNA文库表达异种改变的自我表位,导致t细胞介导的前列腺癌、胶质瘤和黑色素瘤的排斥反应。使用反映肿瘤转录组的改变的自身肽库,规避了对患者中哪些抗原可能具有免疫原性的先验知识的必要性,并启动了多克隆t细胞反应,提供了强大的累积抗肿瘤选择压力。我们利用APOBEC3B(一种产生C到T转化突变的胞嘧啶脱氨酶)的过表达修饰的肿瘤疫苗,扩展了这种改变自身文库疫苗的概念。由稳定过表达人APOBEC3B的B16黑色素瘤细胞制备的冻融全肿瘤细胞疫苗治疗已建立的皮下母代B16肿瘤,当与PD-1检查点阻断联合使用时,治愈率为75%-100%。用疫苗和抗pd1治疗的小鼠的t细胞在体外用亲代未修饰的B16黑色素瘤细胞再刺激时产生高水平的IFN-γ。对B16APOBEC3B过表达细胞的全基因组测序发现,APOBEC3B系特有的301个C - to - T或G - to - A错义突变。利用MHC结合亲和算法,我们鉴定并实验验证了10个APOBEC3B诱导的异晶肽。我们还表明,这种方法可以扩展到高级别胶质瘤的正位脑干模型。立体定向植入脑干的GL261肿瘤对APOBEC3B修饰的GL261疫苗联合抗pd -1检查点阻断治疗有显著反应。总之,当APOBEC3B在肿瘤细胞中过表达时,它会产生一个异位序列文库,该文库可以启动逃脱中心耐受的CD4和CD8 t细胞,并识别来自疫苗的新突变抗原和肿瘤细胞上表达的相应的未改变的自身表位。引文格式:Richard Vile, Laura Evgin, Timothy Kottke, Matthew Schuelke, Christopher B. Driscoll, Amanda L. Huff, Jill Thompson, Amy Molan, Reuben S. Harris, Jose S. Pulido, Phonphimon Wongthida。apobec3b诱导的异交文库肿瘤细胞疫苗和免疫检查点阻断的肿瘤免疫治疗[摘要]。第四届CRI-CIMT-EATI-AACR国际癌症免疫治疗会议:将科学转化为生存;2018年9月30日至10月3日;纽约,纽约。费城(PA): AACR;癌症免疫学杂志,2019;7(2增刊):摘要nr B138。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Abstract B138: Cancer immunotherapy with APOBEC3B-induced heteroclitic library tumor cell vaccines and immune checkpoint blockade
We have previously shown that a vesicular stomatitis virus-based cDNA library expressing xenogeneic altered self-epitopes led to T-cell mediated rejection of prostate cancer, glioma and melanoma. The use of a library of altered self-peptides which reflects the transcriptome of the tumor circumvents the necessity for a priori knowledge of which antigens may be immunogenic in a patient, and primes a polyclonal T-cell response that provides strong cumulative antitumor selective pressure. We have expanded this concept of altered-self library vaccination using tumor vaccines modified by the overexpression of APOBEC3B, a cytosine deaminase that generates C to T transition mutations. A freeze-thawed whole tumor cell vaccine prepared from B16 melanoma cells stably overexpressing human APOBEC3B treated established subcutaneous parental B16 tumors and, when combined with PD-1 checkpoint blockade, cured between 75%-100% of mice. T-cells from mice treated with the vaccine and anti-PD1 produced high levels of IFN-γ when restimulated with parental unmodified B16 melanoma cells in vitro. Whole-genome sequencing of B16APOBEC3B overexpressing cells identified 301 C to T or G to A missense mutations unique to the APOBEC3B line. Using an in silico MHC binding affinity algorithm, we identified and experimentally validated a short list of 10 APOBEC3B- induced heteroclitic peptides. We have also shown that this approach can be extended to an orthotopic brainstem model of high grade glioma. GL261 tumors stereotactically implanted into the brainstem were significantly responsive to treatment with an APOBEC3B- modified GL261 vaccine in combination with anti-PD-1 checkpoint blockade. In summary, when overexpressed in tumor cells, APOBEC3B generates a library of heteroclitic sequences that primes both CD4 and CD8 T-cells that have escaped central tolerance and that recognize both newly mutated antigens from the vaccine, and the corresponding unaltered self epitopes expressed on the tumor cells. Citation Format: Richard Vile, Laura Evgin, Timothy Kottke, Matthew Schuelke, Christopher B. Driscoll, Amanda L. Huff, Jill Thompson, Amy Molan, Reuben S. Harris, Jose S. Pulido, Phonphimon Wongthida. Cancer immunotherapy with APOBEC3B-induced heteroclitic library tumor cell vaccines and immune checkpoint blockade [abstract]. In: Proceedings of the Fourth CRI-CIMT-EATI-AACR International Cancer Immunotherapy Conference: Translating Science into Survival; Sept 30-Oct 3, 2018; New York, NY. Philadelphia (PA): AACR; Cancer Immunol Res 2019;7(2 Suppl):Abstract nr B138.
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