CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Reactivation of low avidity tumor-specific CD8(+) T cells associates with immunotherapeutic efficacy of anti-PD-1.
Reactivation of low avidity tumor-specific CD8(+) T cells associates with immunotherapeutic efficacy of anti-PD-1.
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靶向针对 pMHC 亲和力新表位的低亲和力亚优势 T 细胞反应显示出改善 PD-1 免疫治疗的潜力。未来的干预措施可能考虑通过疫苗接种或过继转移来扩增低亲和力细胞群体。
CD8+ T细胞是一个高度多样化的细胞群体,具有不同的表型功能,可影响免疫治疗的结果。进一步了解自然产生的肿瘤特异性T细胞的CD8+特异性和TCR亲和力的作用,对于理解T细胞耗竭和对PD-1免疫治疗的耐药性至关重要,因为在同一肿瘤中,识别相同肽-主要组织相容性复合体(pMHC)的高亲和力和低亲和力T细胞同时存在。
在皮下肿瘤植入后的第3、6和9天,用anti-PD-1治疗CT26模型,在早期肿瘤发展过程中产生不同的反应。进行tetramer染色以确定靶向肿瘤特异性表位GSW11的CD8 + T细胞的频率和亲和力,并通过tetramer竞争试验加以确认。使用流式细胞术和bulk RNA-seq对高亲和力和低亲和力GSW11特异性CD8 + T细胞进行功能表征。进行体外细胞毒性试验和体内过继转移实验,以确定高亲和力和低亲和力群体的细胞毒性。
抗PD-1治疗成功与低亲和力(Tet lo)GSW11特异性CD8+ T细胞的优先扩增相关,这些细胞具有表达Vβ TCR的克隆型。高亲和力T细胞(Tet hi)如果存在,仅在进展性PD-1难治性肿瘤中发现。与Tet hi相比,Tet lo表现出前体耗竭或祖细胞T细胞表型,其特征为Tcf-1和T-bet表达较高,耗竭标志物CD39、PD-1和Eomes表达较低,而Tet hi细胞则为终末耗竭。转录组学分析显示,与Tet hi相比,在消退和进展肿瘤中发现的Tet lo中,与TCR信号传导、细胞毒性和氧化磷酸化相关的通路显著富集,而与DNA损伤、凋亡和自噬相关的基因则下调。体外研究表明,Tet lo表现出比Tet hi更高的细胞毒性。Tet lo的过继转移显示出比Tet hi更有效的肿瘤控制,当Tet lo与两剂抗PD-1联合使用时,实现了治愈性反应。
CD8 + T cells are a highly diverse population of cells with distinct phenotypic functions that can influence immunotherapy outcomes. Further insights on the roles of CD8 + specificities and TCR avidity of naturally arising tumor-specific T cells, where both high and low avidity T cells recognizing the same peptide-major histocompatibility complex (pMHC) coexist in the same tumor, are crucial for understanding T cell exhaustion and resistance to PD-1 immunotherapy.
CT26 models were treated with anti-PD-1 on days 3, 6 and 9 following subcutaneous tumor implantation generating variable responses during early tumor development. Tetramer staining was performed to determine the frequency and avidity of CD8 + T cells targeting the tumor-specific epitope GSW11 and confirmed with tetramer competition assays. Functional characterization of high and low avidity GSW11-specific CD8 + T cells was conducted using flow cytometry and bulk RNA-seq. In vitro cytotoxicity assays and in vivo adoptive transfer experiments were performed to determine the cytotoxicity of high and low avidity populations.
Treatment success with anti-PD-1 was associated with the preferential expansion of low avidity (Tet lo ) GSW11-specific CD8 + T cells with Vβ TCR expressing clonotypes. High avidity T cells (Tet hi ), if present, were only found in progressing PD-1 refractory tumors. Tet lo demonstrated precursor exhausted or progenitor T cell phenotypes marked by higher expression of Tcf-1 and T-bet, and lower expression of the exhaustion markers CD39, PD-1 and Eomes compared with Tet hi , whereas Tet hi cells were terminally exhausted. Transcriptomics analyses showed pathways related to TCR signaling, cytotoxicity and oxidative phosphorylation were significantly enriched in Tet lo found in both regressing and progressing tumors compared with Tet hi , whereas genes related to DNA damage, apoptosis and autophagy were downregulated. In vitro studies showed that Tet lo exhibits higher cytotoxicity than Tet hi . Adoptive transfer of Tet lo showed more effective tumor control than Tet hi , and curative responses were achieved when Tet lo was combined with two doses of anti-PD-1.
Targeting subdominant T cell responses with lower avidity against pMHC affinity neoepitopes showed potential for improving PD-1 immunotherapy. Future interventions may consider expanding low avidity populations via vaccination or adoptive transfer.
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