PO.TB04.01 · 肿瘤生物学

在抗PD1治疗的患者来源类器官型肿瘤球体(PDOTS)中对免疫激活与肿瘤反应进行纵向图谱绘制

Longitudinal mapping of immune activation to tumor response in anti-PD1-treated patient-derived organotypic tumor spheroids (PDOTS)

编号 673 展板 21 时间 4/19 02:00–05:00 区域 Section 27 主讲 Michael Perricone, PhD
分会场 Ex Vivo Systems: Patient-Derived, Patient-Specific Tumor Cultures
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作者与单位 Authors & Affiliations

Jun Yang1, Julia Vail2, Eunju Shin1, Kyungjin Boo1, Kirti Khardenavis2, Sinal Patel2, Kyoung Wan Yoon1, Michael A. Perricone2

1NEX-I, Inc, Seoul, Korea, Republic of,2Xsphera Biosciences, Inc., Cambridge, MA

摘要 Abstract

中文摘要
Nivolumab是一种抗PD-1免疫检查点抑制剂,已获批用于治疗具有微卫星高度不稳定(MSI-Hi)特征的结直肠癌(CRC),但患者间的差异性以及免疫和肿瘤信号的短期动态尚未得到充分表征。患者来源类器官型肿瘤球体(PDOTS)保留了单个肿瘤的多细胞结构和免疫微环境,提供了一个可在受控条件下监测这些动态的离体平台。在本研究中,我们使用来自8例患者的CRC PDOTS,在72小时内表征nivolumab对肿瘤负荷和转录程序的日尺度效应。将新鲜切除的肿瘤加工成PDOTS,装载入微流控装置,并用nivolumab(100 μg/mL)或培养基对照进行处理。在第1、2和3天,使用Hoechst/碘化丙啶成像及对活肿瘤面积的自动化分析和相对于匹配对照的肿瘤杀伤百分比,对nivolumab的肿瘤反应进行定量。同时,在每个时间点从处理组和对照组PDOTS中分离RNA,并使用NanoString IO360面板进行分析,以捕获肿瘤相关转录物以及免疫和信号相关基因集的协调变化。在整个队列中,nivolumab诱导出不同的时间性转录变化模式,而非统一的开/关特征。一部分PDOTS在第1天即显示免疫和炎症相关转录程序的快速升高,并持续升高至72小时。第二部分在第1天表现为转录冷态,但在第2至3天出现免疫和信号通路的协调性变化,优先上调与干扰素信号、T细胞接合和白细胞迁移相关的基因。第三组在整个72小时窗口内这些程序的变化极小。值得注意的是,许多在第3天有强烈通路调节的PDOTS相较于第1天几乎没有变化,这凸显了仅凭单一早期时间点会低估药物相关生物学效应的风险。这些免疫激活的时间模式大致先于肿瘤反应。这些发现表明,在CRC PDOTS中进行纵向分析可揭示nivolumab诱导的免疫和肿瘤信号动态的离散模式,而这些模式在单一终点测量中并不明显,并支持使用时间分辨的离体平台来完善免疫检查点阻断的机制研究和生物标志物开发。
查看英文原文 English abstract
Nivolumab is an anti-PD-1 immune checkpoint inhibitor approved for colorectal cancer (CRC) with an Microsatellite Instability-High (MSI-Hi) profile, yet patient-to-patient variability and the short-term dynamics of immune and tumor signaling is not well characterized. Patient-derived organotypic tumor spheroids (PDOTS) preserve the multicellular architecture and immune microenvironment of individual tumors, providing an ex vivo platform to monitor these dynamics under controlled conditions. In this study, we used CRC PDOTS from eight patients to characterize day-scale effects of nivolumab on tumor burden and transcriptional programs over a 72 hour peroid. Freshly resected tumors were processed into PDOTS, loaded into microfluidic devices, and treated with nivolumab (100 μg/mL) or a media control. The tumor response to nivolumab was quantified on days 1, 2, and 3 using Hoechst/propidium iodide imaging and automated analysis of live tumor area and the percent tumor killing relative to matched controls. In parallel, RNA was isolated from treated and control PDOTS at each timepoint and profiled using the NanoString IO360 panel to capture coordinated changes in tumor-associated transcripts and immune- and signaling-related gene sets. Across the cohort, nivolumab induced distinct temporal patterns of transcriptional change rather than a uniform on/off signature. A subset of PDOTS showed rapid day-1 increases in immune- and inflammation-related transcriptional programs that remained elevated through 72 hours. A second subset appeared transcriptionally cold at day 1 but developed coordinated shifts in immune and signaling pathways on days 2-3, with preferential upregulation of genes associated with interferon signaling, T-cell engagement, and leukocyte trafficking. A third group displayed minimal changes in these programs over the full 72-hour window. Notably, many PDOTS with strong day-3 pathway modulation showed little or no change from day 1, underscoring the risk of underestimating drug-associated biology from single early timepoints. These temporal patterns of immune activation loosely preceded tumor response. These findings demonstrate that longitudinal profiling in CRC PDOTS reveals discrete patterns of nivolumab-induced immune and tumor signaling dynamics that are not apparent from single terminal measurements, and support the use of time-resolved ex vivo platforms to refine mechanistic studies and biomarker development for immune checkpoint blockade.
利益披露 Disclosure
J. Yang, NEX-I, Inc. Employment. J. Vail, Xsphera Biosciences Independent Contractor. E. Shin, NEX-I, Inc. Employment. K. Boo, NEX-I, Inc. Employment. K. Khardenavis, Xsphera Biosciences, Inc. Employment, Stock Option. S. Patel, Xsphera Biosciences, Inc. Employment. K. Yoon, NEX-I, Inc. Employment. M. A. Perricone, Xsphera Biosciences, Inc. Employment, Stock.

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