单细胞追踪揭示黑色素瘤 TIL 治疗过程中肿瘤反应性 T 细胞的可塑性
Single-cell tracking reveals tumor-reactive T cell plasticity during melanoma TIL therapy.
TIL(肿瘤浸润淋巴细胞)过继细胞治疗可在转移性黑色素瘤中诱导持久缓解,然而在体外扩增过程中及回输后,调控肿瘤反应性T细胞命运的克隆和转录动态仍知之甚少。
英文原题:Enhanced measures of neoantigenicity capture unique tumor-immune interactions across primary melanoma subtypes.
原发性黑色素瘤亚型在其免疫和基因组景观以及它们的相互作用方面存在显著差异。与标准TMB相比,pTMB的不同测量方法在识别原发性黑色素瘤亚型间的肿瘤-免疫关联方面具有附加价值。我们的研究结果表明,pTMB是原发性黑色素瘤中一个相关的新抗原性标志物,具有调节免疫浸润的潜力,从而导致更具侵袭性的疾病。
随着免疫检查点抑制剂治疗向临床高危局限性原发性黑色素瘤的治疗推进,越来越需要清晰理解原发性黑色素瘤各亚型中肿瘤与免疫的相互作用。肿瘤基因组特征在与免疫系统的相互作用中起着至关重要的作用,并已在转移性黑色素瘤中得到广泛探索,但在原发性背景下跨黑色素瘤亚型的理解较少。持续性肿瘤突变负荷(pTMB)已被提出作为转移性黑色素瘤中新抗原性的增强替代指标,相较于标准TMB,但其在原发性疾病中的作用尚不清楚。
本研究利用了一个由178例主要为原发性黑色素瘤组成的队列(皮肤非肢端型:n = 69,肢端型:n = 36,黏膜型:n = 73),其中127例有可用的全基因组测序(WGS,n = 127)数据,用于测量TMB、pTMB、非整倍体及杂合性缺失,以及140例有多重免疫组织化学(mIHC,n = 140)数据,用于识别瘤内T细胞(CD3 +、CD8 +、CD45RO + 和 CD103 +)、B细胞(CD20 +)、树突状细胞(CD11c +)、巨噬细胞(CD68 +)和PD-L1 + 细胞。
虽然 pTMB 主要由原发黑色素瘤各亚型中多拷贝存在的突变贡献,但不同的克隆性 pTMB 家族捕获了与 CD8 + T 细胞及 CD8 + CD103 + T 细胞的关系,这些关系在各亚型中未被克隆性标准 TMB 捕获。克隆性单拷贝 pTMB 与皮肤黑色素瘤中 CD8 + T 细胞(p = 0.003)和 CD8 + CD103 + T 细胞浸润(p = 0.008)升高呈正相关。相反,克隆性多拷贝 pTMB 与肢端(p = 0.048)和黏膜(p = 0.049)黑色素瘤中 CD8 + CD103 + T 细胞浸润升高呈正相关。与黏膜黑色素瘤相比,皮肤原发黑色素瘤具有更高比例的 CD8 + T 细胞(p = 0.009)和 CD8 + CD103 + T 细胞(p = 0.0002)。反过来,在皮肤黑色素瘤中,CD8 + T 细胞浸润与无淋巴管侵犯相关(p = 0.003),并与肿瘤核分裂率呈负相关(p = 0.049),提示疾病侵袭性较低。
BACKGROUND: As immune checkpoint inhibitor therapies move toward treatment of clinically high-risk localized primary melanoma, there is an increasing need for clear understanding of the tumor-immune interaction across primary melanoma subtypes. Tumor genomic properties play a crucial role in the interaction with the immune system and have been widely explored in metastatic melanoma, but are less understood in the primary context across melanoma subtypes. Persistent tumor mutational burden (pTMB) has been proposed as an enhanced proxy of neoantigenicity in metastatic melanoma compared to standard TMB, but its role in primary disease is not known. METHODS: This study utilised a cohort of 178 predominantly primary melanomas (cutaneous non-acral: n = 69, acral: n = 36, mucosal: n = 73) with available whole-genome sequencing (WGS, n = 127) to measure TMB, pTMB, aneuploidy and loss of heterozygosity, as well as multiplexed immunohistochemistry (mIHC, n = 140) to identify intratumoral T cells (CD3 + , CD8 + , CD45RO + & CD103 +), B cells (CD20 +), dendritic cells (CD11c +), macrophages (CD68 +) and PD-L1 + cells. RESULTS: Whilst pTMB is mostly contributed by mutations present in multiple copies across primary melanoma subtypes, distinct families of clonal pTMB capture relationships with CD8 + T cells and CD8 + CD103 + T cells across subtypes not captured by clonal standard TMB. Clonal single-copy pTMB was positively associated with elevated CD8 + T cell (p = 0.003) and CD8 + CD103 + T cell infiltration (p = 0.008) in cutaneous melanomas. In contrast, clonal multiple-copy pTMB was positively associated with elevated CD8 + CD103 + T cell infiltration in acral (p = 0.048) and mucosal (p = 0.049) melanomas. Cutaneous primary melanomas had greater proportions of CD8 + T cells (p = 0.009) and CD8 + CD103 + T cells (p = 0.0002) compared to mucosal melanomas. In turn, CD8 + T cell infiltration was associated with absence of lymphatic invasion (p = 0.003), and negatively associated with tumor mitotic rate (p = 0.049) in cutaneous melanomas, indicative of less aggressive disease. CONCLUSIONS: Primary melanoma subtypes present significant differences in their immune and genomic landscapes, as well as their interactions. Distinct measures of pTMB carry added value compared to standard TMB for identification of tumour-immune associations across primary melanoma subtypes. Our findings indicate that pTMB is a relevant neoantigenicity marker in primary melanoma with the potential to modulate immune infiltration, leading to more aggressive disease.
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