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离体免疫肿瘤学平台揭示与高级别浆液性卵巢癌中 ATR 抑制反应相关的空间 T 细胞浸润模式

英文原题:Ex Vivo Immuno-Oncology Platform Reveals Spatial T-cell Infiltration Patterns Linked to ATR Inhibition Responses in High-Grade Serous Ovarian Cancer.

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Ex Vivo Immuno-Oncology Platform Reveals Spatial T-cell Infiltration Patterns Linked to ATR Inhibition Responses in High-Grade Serous Ovarian Cancer.

PubMed 2026/04/02(内容时间) Cancer Immunol Res Q1 · IF 7.9(JCR 2025)

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中文摘要

在高grade浆液性卵巢癌(HGSC)中寻找新的治疗策略,需要开发更准确的临床前模型,以复现患者特异性肿瘤及其微环境。为解决这一问题,我们建立了HGSC的免疫 competent 患者来源培养物(iPDC),并将其培养在生理相关的人网膜凝胶基质上。

我们开发了一个高通量平台,将药物检测、组织学分析、基因组分析、单细胞研究和空间生物标志物发现相结合。我们来自47个肿瘤的结果显示,iPDC复现了肿瘤的基因组和组织学特征,同时还保留了瘤内免疫细胞。iPDC治疗反应与患者的临床治疗反应显著相关。利用iPDC和单细胞RNA测序,我们为复发性HGSC患者确定了可能有效的治疗选择,这些选择与不同的肿瘤细胞状态和耐药机制相关。结合单细胞成像的高通量药物反应分析确定,ataxia telangiectasia and Rad3-related inhibitor(ATRi)联合靶向autotaxin的免疫治疗是HGSC一种有前景的新联合治疗。利用超多重成像和空间分析,我们发现ATRi反应与瘤内和瘤周T细胞浸润的显著增加相关,尤其是PD-1+ CD8+ T细胞。

此外,ATRi诱导的CD8+ T细胞再激活与复制应激阳性肿瘤细胞的空间相互作用相关。因此,我们的iPDC平台提供了一种具有代表性的高通量离体模型,用于推进HGSC的精准肿瘤学,并揭示了ATRi-免疫治疗联合方案作为一种可能有效的治疗选择,具有临床转化潜力。

展开英文摘要原文

Identifying new therapeutic approaches in high-grade serous ovarian cancer (HGSC) requires the development of more accurate preclinical models that replicate the patient-specific tumor and its microenvironment. To address this, we established immunocompetent patient-derived cultures (iPDC) for HGSC, cultured on a physiologically relevant human omentum gel matrix.

We developed a high-throughput platform that combines drug testing, histologic analysis, genomic profiling, single-cell studies, and spatial biomarker discovery.

Our results from 47 tumors showed that iPDCs recapitulated the tumor genomic and histologic characteristics while also retaining the intratumoral immune cells. The iPDC treatment responses correlated significantly with the patients' clinical treatment responses. Using iPDCs and single-cell RNA sequencing, we identified potentially effective therapeutic options for patients with recurrent HGSC linked to distinct tumor cell states and mechanisms of resistance.

High-throughput drug response profiling with single-cell imaging identified ataxia telangiectasia and Rad3-related inhibitor (ATRi) combined with an immunotherapy targeting autotaxin as a promising new combination treatment for HGSC. Using hyperplexed imaging and spatial analysis, we discovered that ATRi responses were associated with significant increases in both intra- and peritumoral T-cell infiltration, particularly in PD-1+ CD8+ T cells.

Additionally, the ATRi-induced reactivation of CD8+ T cells was linked to spatial interactions with replication stress-positive tumor cells.

Thus, our iPDC platform presents a representative high-throughput ex vivo model to advance precision oncology in HGSC, uncovering the ATRi-immunotherapy combination as a potentially effective therapeutic option for clinical translation.

论文信息

作者
Sakrepatna Nagaraj A、Salko M、Sirsikar A、Kang Z、Erkan EP、Pietilä EA、Niemiec I、Bao J
单位
Research Program in Systems Oncology, University of Helsinki, Helsinki, Finland.Finland
期刊
Cancer immunology research2026 Apr 2
原文标识
PubMed 41563843 · DOI 10.1158/2326-6066.CIR-25-0743