决定异体 CAR T 细胞排斥与扩增的细胞和分子机制
Cellular and molecular mechanisms determining allogeneic CAR T cell rejection and expansion.
我们评估了11例接受单一批次cemacabtagene ansegedleucel(cema-cel)治疗的大B细胞淋巴瘤患者,cemacabtagene ansegedleucel是一种异体抗CD19 CAR T产品。
英文原题:Proteomic and proteogenomic identification of targetable T-cell antigens in multiple myeloma.
本研究首次基于蛋白基因组学在MM中鉴定新抗原,将Ig来源新抗原的观察从B细胞淋巴瘤扩展至MM,并强调了可操作抗原及基于TCR的有效免疫治疗所面临的障碍。
多发性骨髓瘤(MM)约占所有血液系统恶性肿瘤的12%,尽管治疗取得了进展,但仍无法治愈。通过疫苗或T细胞受体(TCR)重定向T细胞靶向人类白细胞抗原(HLA)分子呈递的肿瘤相关抗原(TAA)和肿瘤特异性新抗原,提供了一种有前景的新型免疫治疗策略。然而,对可靶向的肿瘤抗原,尤其是新抗原的认识仍然有限。我们对原发MM样本(n = 8)和MM细胞系(n = 3)应用了基于质谱(MS)的免疫肽组学方法,整合全外显子组和RNA测序,以全面表征MM免疫肽组并系统搜索TAA和新抗原。利用我们的方法,我们检测到了癌症相关磷酸肽HLA配体以及多种癌睾丸抗原(CTA)来源的HLA肽,其中一些在肿瘤样本之间共享。蛋白质基因组学分析主要揭示了由V(D)J重组和体细胞超突变(SHM)产生的个体化患者特异性免疫球蛋白(Ig)来源新抗原,这些新抗原存在于所有样本中。三名患者显示相关MHC II类肽配体在高突变区域内聚集。此外,我们在原发MM样本和细胞系中均鉴定出了非Ig来源的新抗原。约30%的细胞系来源肽在同种异体HLA匹配的健康供者PBMC中引发了CD8⁺ T细胞应答。相比之下,患者来源的新抗原在自体PBMC或TIL(肿瘤浸润淋巴细胞)中均无免疫原性,反映了严重的免疫功能障碍。本研究首次基于蛋白基因组学在MM中鉴定新抗原,将Ig来源新抗原的观察从B细胞淋巴瘤扩展至MM,并强调了可操作抗原及基于TCR的有效免疫治疗所面临的障碍。
Multiple myeloma (MM) accounts for approximately 12% of all hematologic malignancies and remains incurable despite therapeutic advances. Targeting tumor-associated antigens (TAAs) and tumor-specific neoantigens presented on human leukocyte antigen (HLA) molecules by vaccination or T cell receptor (TCR)-redirected T cells offers a promising novel immunotherapeutic strategy. However, knowledge of targetable tumor antigens, especially neoantigens, is limited. We applied a mass spectrometry (MS)-based immunopeptidomics approach on primary MM samples (n = 8) and MM cell lines (n = 3), integrating whole-exome and RNA sequencing to comprehensively characterize the MM immunopeptidome and systematically search for TAAs and neoantigens. Using our approach, we detected cancer-associated phosphopeptide HLA ligands as well as multiple cancer testis antigen (CTA)-derived HLA peptides, some shared between tumor samples. Proteogenomic analysis revealed primarily personalized patient-specific Immunoglobulin (Ig)-derived neoantigens generated by V(D)J recombination and somatic hypermutation (SHM), which were present in all samples. Three patients showed clustering of related MHC class II peptide ligands within the hypermutated region. In addition, we identified non-Ig-derived neoantigens in both primary MM samples and cell lines. Approximately 30% of the cell line-derived peptides elicited CD8⁺ T-cell responses in allogeneic HLA-matched healthy donor PBMCs. In contrast, none of the patient-derived neoantigens were immunogenic in autologous PBMCs or tumor-infiltrating lymphocytes, reflecting severe immune dysfunction. This study provides the first proteogenomic-based identification of neoantigens in MM, extends the observation of presented Ig-derived neoantigens from B cell lymphoma to MM, and highlights both actionable antigens and barriers to effective TCR-based immunotherapy.
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