PO.TB04.02 · 肿瘤生物学

小细胞肺癌人源化小鼠模型识别出对免疫-放射联合治疗反应中独特的T细胞浸润免疫表型

Small cell lung cancer humanized mouse models identifies unique T cell infiltration immune phenotypes in response to combination immune-radiation therapies.

海报缩略图:小细胞肺癌人源化小鼠模型识别出对免疫-放射联合治疗反应中独特的T细胞浸润免疫表型
编号 3379 展板 9 时间 4/20 02:00–05:00 区域 Section 27 主讲 Bell Wu, BS
分会场 Humanized Mouse Models
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作者与单位 Authors & Affiliations

Bell Wu1, Xiaozhuo Ran2, Olivia Huang1, Lifang Song2, Vivek Phillip2, Adrian Sacher3, Ming Sound Tsao3, Benjamin Lok1

1Medical Biophysics, University of Toronto, Toronto, ON, Canada,2Princess Margaret Cancer Centre, Toronto, ON, Canada,3UHN Princess Margaret Cancer Centre, Toronto, ON, Canada

摘要 Abstract

中文摘要
背景:将SCLC分子分类为不同亚型(SCLC-ASCL1、SCLC-NEUROD1、SCLC-POU2F3和SCLC-炎症型)揭示了不同的免疫背景;然而,由于能够充分捕捉POU2F3和炎症型亚型的模型有限,肿瘤-免疫微环境的临床前研究受到制约。为解决这一问题,我们研究了外周血单个核细胞(PBMC)人源化小鼠(hu-mice)作为传统鼠类系统的补充,以扩展可用的肿瘤-免疫模型。我们进一步表征了SCLC hu-mice模拟治疗敏感性的能力,重点关注一种新型三联方案——AZD1390(ATM抑制剂)联合放疗(RT)和durvalumab(抗PDL1),以研究DNA损伤修复抑制加RT如何重塑免疫微环境并使SCLC亚型对抗PDL1敏感。 方法:将人PBMCs静脉注射入免疫缺陷小鼠,并皮下移植对应所有亚型的一组人SCLC细胞系。使用多参数流式细胞术分析外周和浸润免疫,以评估亚型特异性肿瘤-免疫相互作用的细胞因子、耗竭和活化情况。在durvalumab单药治疗和联合治疗后评估肿瘤浸润动力学和抗肿瘤效应。 结果:T细胞肿瘤浸润因亚型而异,SCLC-炎症型亚型表现出最高水平的浸润,且以HLA非依赖方式发生。浸润的CD8 + T细胞迅速获得耗竭表型,上调PD1、CD39、TOX并下调Ki67、IFNG和TCF1,与效应功能受损相一致。抗PDL1单药治疗揭示了移植细胞系的亚型特异性敏感性,仅在SCLC-炎症型细胞系SBC5中观察到跨多个供体的肿瘤控制。选择AZD1390和RT作为与抗PDL1联合的候选方案,因为它通过cGAS-STING介导的机制刺激趋化因子(CCL5、CXCL10)表达增加,并在体外多个细胞系中增加表面PDL1表达。AZD1390和RT在体内使原本无反应的异种移植物对抗PDL1敏感。治疗反应与更高比例的CD39 + CD103 + 肿瘤反应性T细胞和减少的终末耗竭(TCF1 - TOX +)相关,提示向更具功能性的T细胞库转变。 结论:我们的临床前观察表明,PBMC hu-mice是一个可行的平台,可用于模拟移植的人SCLC细胞系的内在免疫-肿瘤特征。联合放疗增强了选定模型中抗PDL1的疗效。未来研究将旨在识别所治疗模型的反应决定特征,以改善临床试验中的患者选择。
查看英文原文 English abstract
Background: Molecular classification of SCLC into subtypes (SCLC- ASCL1 , SCLC- NEUROD1 , SCLC- POU2F3 , and SCLC-Inflamed) has revealed distinct immune contextures; however, preclinical research of the tumor-immune microenvironment is constrained by limited models that poorly capture POU2F3 and inflamed subtypes. To address this, we investigated peripheral blood mononuclear cell (PBMC) humanized mice (hu-mice) as a complement to conventional murine systems to broaden available tumor-immune models. We further characterized SCLC hu-mice for their ability to model therapeutic sensitivity, focusing on a novel triplet regimen, AZD1390 (ATM inhibitor) with radiotherapy (RT) and durvalumab (aPDL1), to investigate how DNA damage repair inhibition plus RT can reshape the immune microenvironment and sensitize SCLC subtypes to aPDL1. Methods: Immunodeficient mice were intravenously injected with human PBMCs and subcutaneously engrafted with a panel of human SCLC cell-lines corresponding to all subtypes. Peripheral and infiltrating immunity were profiled with multiparameter flow cytometry to assess cytokine, exhaustion, and activation of subtype-specific tumour-immune interactions. Tumor infiltration kinetics and antitumor effects were evaluated following durvalumab monotherapy and combination therapy. Results: T cell tumor infiltration varied by subtype with SCLC-Inflamed subtypes exhibiting the highest level of infiltration in an HLA-independent fashion. Infiltrating CD8 + T cells rapidly acquired an exhaustion phenotype upregulating PD1, CD39, TOX and downregulating Ki67, IFNG, and TCF1, consistent with impaired effector function. aPDL1 monotherapy revealed subtype-specific sensitivity of engrafted cell-lines, with tumour control across multiple donors seen only in the SCLC-Inflamed cell-line, SBC5. AZD1390 and RT was selected as a candidate combination with aPDL1 as it stimulated increased chemokine (CCL5, CXCL10) expression via a cGAS-STING-mediated mechanism and increased surface PDL1 expression across multiple cell-lines in vitro . AZD1390 and RT sensitized otherwise non-responsive xenografts to aPDL1 in vivo . Treatment response was associated with higher proportions of CD39 + CD103 + tumor-reactive T cells and reduced terminal exhaustion (TCF1 - TOX + ) suggesting a shift towards a more functional T cell repertoire. Conclusions: Our preclinical observations demonstrate PBMC hu-mice as a viable platform to model intrinsic immune-tumor characteristics of engrafted human SCLC cell-lines. Combinatory radiation therapy enhanced anti-PDL1 efficacy in select models. Future studies will aim to identify response-defining features of treated models to improve patient selection in clinical trials.
利益披露 Disclosure
B. Wu, None.. X. Ran, None.. O. Huang, None.. L. Song, None.. V. Phillip, None. B. Lok, Astrazeneca ). Pfizer ).

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