CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Transcriptional and functional analyses of neoantigen-specific CD4 T cells during a profound response to anti-PD-L1 in metastatic Merkel cell carcinoma.
Transcriptional and functional analyses of neoantigen-specific CD4 T cells during a profound response to anti-PD-L1 in metastatic Merkel cell carcinoma.
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我们在一位对抗 PD-L1 治疗产生深刻且持久部分缓解的患者中,鉴定并表征了靶向多个新抗原的肿瘤特异性 Th1 偏斜 CD4 T 细胞。据我们所知,这是 MCC 中新抗原特异性 T 细胞应答的首次报道。尽管在病毒阳性 MCC 中通常可检测到识别病毒肿瘤抗原的 CD4 和 CD8 T 细胞,但该患者中仅检测到识别新抗原的 CD4 T 细胞。这些发现表明 CD4 T 细胞可能在抗 PD-(L)1 治疗应答中发挥重要作用。
Merkel细胞癌(MCC)通常对PD-1通路阻断有应答,无论肿瘤病毒状态如何(约80%的病例由Merkel细胞多瘤病毒(MCPyV)驱动)。既往研究已描述了针对MCPyV的肿瘤特异性T细胞应答,这些应答通常为CD8,但对UV诱导的新抗原的T细胞应答知之甚少。
一名50多岁的病毒阴性(VN)MCC患者在对化疗产生短暂初始缓解后出现了大的肝转移。她接受了抗PD-L1(avelumab)治疗,并在4周内达到部分缓解。进行了全外显子组测序(WES)以确定潜在的新抗原肽。通过干扰素-γ(IFNγ)ELISpot、流式细胞术和单细胞RNA测序评估了外周血新抗原T细胞反应的特征。通过多重免疫组织化学对肿瘤驻留T细胞进行了表征。
WES 鉴定出 1027 个肿瘤特异性体细胞突变,与已发表的 VN-MCC 平均 1121 个突变相似。以 ≤100 nM 为结合阈值进行肽段预测,结果合成 77 个肽段用于 T 细胞试验。尽管肽段是基于 I 类 HLA 预测的,我们鉴定出循环 CD4 T 细胞靶向 77 个新抗原中的 5 个。相比之下,未检测到新抗原特异性 CD8 T 细胞反应。新抗原特异性 CD4 T 细胞在抗 PD-L1 治疗前血液中检测不到,但在开始治疗后不久即变得容易检测到。T 细胞在新抗原(突变)肽段刺激下产生强烈的 IFNγ,但在正常(野生型)肽段刺激下则不产生。单细胞 RNAseq 显示新抗原反应性 T 细胞表达 Th1 相关转录因子(T-bet)及相关细胞因子。这些 CD4 T 细胞未显著表现出细胞毒性或非 Th1 标志物。在治疗前肿瘤内,驻留 CD4 T 细胞也偏向 Th1 并表达 T-bet。
Merkel cell carcinoma (MCC) often responds to PD-1 pathway blockade, regardless of tumor-viral status (~80% of cases driven by the Merkel cell polyomavirus (MCPyV)). Prior studies have characterized tumor-specific T cell responses to MCPyV, which have typically been CD8, but little is known about the T cell response to UV-induced neoantigens.
A patient in her mid-50s with virus-negative (VN) MCC developed large liver metastases after a brief initial response to chemotherapy. She received anti-PD-L1 (avelumab) and had a partial response within 4 weeks. Whole exome sequencing (WES) was performed to determine potential neoantigen peptides. Characterization of peripheral blood neoantigen T cell responses was evaluated via interferon-gamma (IFNγ) ELISpot, flow cytometry and single-cell RNA sequencing. Tumor-resident T cells were characterized by multiplexed immunohistochemistry.
WES identified 1027 tumor-specific somatic mutations, similar to the published average of 1121 for VN-MCCs. Peptide prediction with a binding cut-off of ≤100 nM resulted in 77 peptides that were synthesized for T cell assays. Although peptides were predicted based on class I HLAs, we identified circulating CD4 T cells targeting 5 of 77 neoantigens. In contrast, no neoantigen-specific CD8 T cell responses were detected. Neoantigen-specific CD4 T cells were undetectable in blood before anti-PD-L1 therapy but became readily detectible shortly after starting therapy. T cells produced robust IFNγ when stimulated by neoantigen (mutant) peptides but not by the normal (wild-type) peptides. Single cell RNAseq showed neoantigen-reactive T cells expressed the Th1-associated transcription factor (T-bet) and associated cytokines. These CD4 T cells did not significantly exhibit cytotoxicity or non-Th1 markers. Within the pretreatment tumor, resident CD4 T cells were also Th1-skewed and expressed T-bet.
We identified and characterized tumor-specific Th1-skewed CD4 T cells targeting multiple neoantigens in a patient who experienced a profound and durable partial response to anti-PD-L1 therapy. To our knowledge, this is the first report of neoantigen-specific T cell responses in MCC. Although CD4 and CD8 T cells recognizing viral tumor antigens are often detectible in virus-positive MCC, only CD4 T cells recognizing neoantigens were detected in this patient. These findings suggest that CD4 T cells can play an important role in the response to anti-PD-(L)1 therapy.
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