下一代肿瘤不可知靶点即将出现
Next-generation tumor-agnostic targets on the horizon.
肿瘤不可知药物开发将肿瘤学重新聚焦于共享的分子依赖性而非组织来源,从而能够针对跨肿瘤的罕见可操作驱动因素进行高效开发。
英文原题:Immunotherapy resistance driven by loss of NY-ESO-1 expression in response to transgenic adoptive cellular therapy with PD-1 blockade.
Immunotherapy resistance driven by loss of NY-ESO-1 expression in response to transgenic adoptive cellular therapy with PD-1 blockade.
NY-ESO-1 转基因 T 细胞联合 DC 疫苗和抗 PD-1 治疗的 ACT 产生了短暂抗肿瘤活性。在 NY-ESO-1 启动子区域广泛甲基化的背景下,治疗后样本中 NY-ESO-1 表达丢失。生物学/临床启示:抗原丢失代表肉瘤中一种新的免疫逃逸机制,也是细胞治疗方法的一个新改进点。
肿瘤抗原 NY-ESO-1 已被证明是治疗肉瘤和黑色素瘤的转基因过继性细胞疗法 (ACT) 的有效靶点。然而,尽管早期临床反应频繁,许多患者最终仍出现疾病进展。了解治疗耐药的机制对于改进未来的 ACT 方案至关重要。在此,我们描述了一种肉瘤治疗耐药的新机制,涉及在转基因 ACT 联合树突状细胞 (DC) 疫苗和程序性细胞死亡蛋白-1 (PD-1) 阻断治疗后 NY-ESO-1 表达的缺失。
一名HLA-A*02:01阳性、NY-ESO-1阳性的未分化多形性肉瘤患者接受了自体NY-ESO-1特异性T细胞受体(TCR)转基因淋巴细胞、NY-ESO-1肽脉冲DC疫苗以及nivolumab介导的PD-1阻断治疗。
外周血中NY-ESO-1特异性T细胞的 reconstitution 在ACT后2周内达到峰值,表明体内快速扩增。出现了初步的肿瘤消退,外周转基因T细胞的免疫表型分析显示,随着时间推移,主要呈效应记忆表型。通过基于TCR测序和基于RNA测序的免疫 reconstitution,在治疗中活检中证实了转基因T细胞向肿瘤部位的追踪,并且在肿瘤部位证实了nivolumab与转基因T细胞上的PD-1结合。在疾病进展时,发现NY-ESO-1的启动子区域广泛甲基化,并且通过RNA测序和免疫组织化学检测,肿瘤NY-ESO-1表达完全丢失。
BACKGROUND: The tumor antigen NY-ESO-1 has been shown to be an effective target for transgenic adoptive cell therapy (ACT) for the treatment of sarcoma and melanoma. However, despite frequent early clinical responses, many patients ultimately develop progressive disease. Understanding the mechanisms underlying treatment resistance is crucial to improve future ACT protocols. Here, we describe a novel mechanism of treatment resistance in sarcoma involving loss of expression of NY-ESO-1 in response to transgenic ACT with dendritic cell (DC) vaccination and programmed cell death protein-1 (PD-1) blockade. METHODS: A HLA-A*02:01-positive patient with an NY-ESO-1-positive undifferentiated pleomorphic sarcoma was treated with autologous NY-ESO-1-specific T-cell receptor (TCR) transgenic lymphocytes, NY-ESO-1 peptide-pulsed DC vaccination, and nivolumab-mediated PD-1 blockade. RESULTS: Peripheral blood reconstitution with NY-ESO-1-specific T cells peaked within 2 weeks of ACT, indicating rapid in vivo expansion. There was initial tumor regression, and immunophenotyping of the peripheral transgenic T cells showed a predominantly effector memory phenotype over time. Tracking of transgenic T cells to the tumor sites was demonstrated in on-treatment biopsy via both TCR sequencing-based and RNA sequencing-based immune reconstitution, and nivolumab binding to PD-1 on transgenic T cells was confirmed at the tumor site. At the time of disease progression, the promoter region of NY-ESO-1 was found to be extensively methylated, and tumor NY-ESO-1 expression was completely lost as measured by RNA sequencing and immunohistochemistry. CONCLUSIONS: ACT of NY-ESO-1 transgenic T cells given with DC vaccination and anti-PD-1 therapy resulted in transient antitumor activity. NY-ESO-1 expression was lost in the post-treatment sample in the setting of extensive methylation of the NY-ESO-1 promoter region. BIOLOGICAL/CLINICAL INSIGHT: Antigen loss represents a novel mechanism of immune escape in sarcoma and a new point of improvement in cellular therapy approaches. TRIAL REGISTRATION NUMBER: NCT02775292.
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