PO.MCB08.05 · 分子与细胞生物学

免疫衰老和抗原呈递缺陷定义了膀胱癌中预先存在的BCG无反应状态

Immune senescence and antigen presentation defects define a pre-existing state of BCG unresponsiveness in bladder cancer

编号 7281 展板 21 时间 4/22 09:00–12:00 区域 Section 21 主讲 Kyoung Jun Lee, BS
分会场 Genomic Approaches to Define Tumor Biology and Clinical Stratification
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作者与单位 Authors & Affiliations

KyounJun Lee1, Jee Soo Park2, Myung Eun Lee2, Jongchan Kim3, Hyoung-oh Jeong1, Minseo Kim1, Won Sik Ham2, Semin Lee1

1UNIST, Ulsan, Korea, Republic of,2Yonsei University College of Medicine, Seoul, Korea, Republic of,3Yonsei University Health System, Seoul, Korea, Republic of

摘要 Abstract

中文摘要
背景:卡介苗(BCG)是高危非肌层浸润性膀胱癌(NMIBC)的标准治疗,但相当一部分患者未能产生反应。尽管T细胞功能障碍和抗原呈递受损已被认为与BCG耐药有关,但它们在治疗前的存在及其临床意义仍不明确。我们旨在定义一个可重复的、治疗特异性的BCG无反应转录组特征,其核心为抗原呈递机制(APM)缺陷。 方法:我们对10例治疗前NMIBC肿瘤进行了单细胞RNA测序(scRNA-seq),以鉴定与BCG结局相关的细胞程序。在独立的批量转录组队列(UROMOL和BRS)中量化了肿瘤内在的APM活性和干扰素通路状态。评估治疗前尿液样本中一组靶向趋化因子(IL-6、IL-8、IFN-gamma、CXCL10、CXCL13、CCL5、CCL21),以确定转录组IFN/APM活性与蛋白水平免疫信号之间的一致性。 结果:单细胞分析显示,BCG无反应肿瘤表现出上皮APM表达显著降低,同时伴有I型/II型干扰素信号受抑制和浆细胞样树突状细胞活性丧失。这些转录组特征在蛋白水平上得到反映:无反应者在BCG灌注前显示出显著更低的尿液趋化因子水平。在超过350例患者中进行的批量转录组验证表明,高APM活性能稳健地预测BCG治疗患者无复发生存的改善(p < 0.05)。 结论:BCG无反应NMIBC的特征是预先存在的抗原呈递缺陷,并伴有干扰素信号受抑制,可在转录组和尿液蛋白两个层面上检测到。APM特征在多队列数据集中表现出强大的、治疗特异性的预测价值,为APM恢复或IFN增强的膀胱内免疫治疗作为不太可能从BCG获益患者的替代方案提供了具有生物学说服力的依据。 致谢:本文所示结果部分基于TCGA研究网络生成的数据:https://www.cancer.gov/tcga。我们感谢延世大学医学院泌尿外科和检验医学科的工作人员提供的技术协助。我们也感谢所有参与本研究的患者。本研究得到韩国国家研究基金会(NRF)由韩国政府(MSIT)资助的经费支持(资助编号:2022R1A2C2003831)。本工作还得到韩国国家研究基金会(NRF)由教育部资助的支持(RS-2018-NR031072)。
查看英文原文 English abstract
Background: Bacillus Calmette-Guérin (BCG) is standard therapy for high-risk non-muscle invasive bladder cancer (NMIBC), yet a substantial proportion of patients fail to respond. Although T-cell dysfunction and impaired antigen presentation have been implicated in BCG resistance, their pre-treatment presence and clinical relevance remain unclear. We aimed to define a reproducible, treatment-specific transcriptomic signature of BCG unresponsiveness centered on antigen presentation machinery (APM) deficiency. Methods: We performed single-cell RNA sequencing (scRNA-seq) on 10 pre-treatment NMIBC tumors to identify cellular programs associated with BCG outcomes. Tumor-intrinsic APM activity and interferon pathway status were quantified at the independent bulk transcriptomic cohorts (UROMOL and BRS). Pre-treatment urine samples were assessed for a targeted chemokine panel (IL-6, IL-8, IFN-gamma, CXCL10, CXCL13, CCL5, CCL21) to determine concordance between transcriptomic IFN/APM activity and protein-level immune signaling. Results: Single-cell profiling revealed that BCG-unresponsive tumors exhibited markedly reduced epithelial APM expression accompanied by suppression of type I/II interferon signaling and loss of plasmacytoid dendritic cell activity. These transcriptomic features were reflected at the protein level: non-responders displayed significantly lower urine chemokine levels prior to BCG instillation. Bulk transcriptomic validation across >350 patients demonstrated that high APM activity robustly predicted improved recurrence-free survival in BCG-treated patients (p < 0.05). Conclusions: BCG-unresponsive NMIBC is defined by a pre-existing antigen presentation defect coupled with suppressed interferon signaling, detectable at both the transcriptomic and urine protein levels. The APM signature exhibits strong, treatment-specific predictive value across multi-cohort datasets and provides a biologically compelling rationale for APM-restoring or IFN-enhancing intravesical immunotherapies as alternatives for patients unlikely to benefit from BCG. Acknowledgments : The results shown here are in part based upon data generated by the TCGA Research Network: https://www.cancer.gov/tcga. We thank the staff of the Department of Urology and Laboratory Medicine at Yonsei University College of Medicine for their technical assistance. We also thank all the patients who participated in this study. This study was supported by grants from the National Research Foundation of Korea (NRF) grants funded by the Korean government (MSIT) (grant numbers: 2022R1A2C2003831). This work was also supported by the National Research Foundation of Korea (NRF) funded by the Ministry of Education (RS-2018-NR031072).
利益披露 Disclosure
K. Lee, None.. J. Park, None.. M. Lee, None.. J. Kim, None.. H. Jeong, None.. M. Kim, None.. W. Ham, None.. S. Lee, None.

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