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人源化小鼠中肿瘤抗原特异性 T 细胞反应的精准建模用于肿瘤免疫治疗的临床前评估

英文原题:Precision modeling of tumor antigen-specific T-cell responses in humanized mice for preclinical assessment of cancer immunotherapies.

查看英文原题

Precision modeling of tumor antigen-specific T-cell responses in humanized mice for preclinical assessment of cancer immunotherapies.

PubMed 2026/04/15(内容时间) J Immunother Cancer Q1 · IF 11.7(JCR 2025)

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研究概要

这种可适应且具有生理相关性的模型为剖析人类肿瘤、免疫细胞和免疫疗法之间复杂的相互作用提供了一个平台,并有可能显著改善临床前研究结果向临床的转化。

研究思路结论见上方概要

人源化小鼠是癌症免疫疗法临床前开发中极具价值的模型。然而,传统模型往往无法产生强健且可追踪的肿瘤抗原特异性(TA特异性)T细胞反应,这阻碍了对依赖这种内源性抗肿瘤免疫的疗法的全面评估。

为了解决这一局限性,我们通过将转导了预定T细胞受体(TCR)特异性的人造血干细胞移植到免疫缺陷小鼠中,构建了一种人源化小鼠模型。该方法能够在可调节的频率下从头生成na ve、功能性的TA特异性T细胞。

我们发现,携带转基因的人胸腺细胞在小鼠胸腺中具有发育优势,这可能是由于转基因 TCR 的早期形成以及相关的自主信号传导。在肿瘤研究中,这些 TA 特异性 T 细胞的存在延缓了肿瘤生长,并促进了瘤内 T 细胞表型多样性的增加,包括形成 PD-1 + /TCF1 + 前体耗竭 T 细胞,而对照组小鼠中不存在这些细胞。我们证明了该模型在两种不同的治疗背景中的实用性。首先,我们发现高基线频率的 TA 特异性 T 细胞削弱了 T 细胞双特异性抗体(TCB)的疗效,表明预先存在的耗竭限制了 TCB 活性。此外,该模型使得能够评估共刺激激动剂(FAP-CD40 和 FAP-4-1BBL),并证明它们依赖该 T 细胞区室来发挥抗肿瘤疗效。

展开英文摘要原文

Humanized mice are highly valuable models for the preclinical development of cancer immunotherapies. However, conventional models often fail to mount robust and trackable tumor antigen-specific (TA-specific) T-cell responses, which hinders the comprehensive evaluation of therapies that depend on this endogenous antitumor immunity.

To address this limitation, we generated a humanized mouse model by engrafting immunodeficient mice with human hematopoietic stem cells that were transduced with predefined T-cell receptor (TCR) specificities. This approach enables the de novo generation of na ve, functional TA-specific T cells at adjustable frequencies.

We found that transgene-bearing human thymocytes have a developmental advantage in the murine thymus, likely due to the early formation of the transgenic TCR and associated autonomous signaling. In tumor studies, the presence of these TA-specific T cells delayed tumor growth and promoted increased phenotypic diversity of intratumoral T cells, including the formation of PD-1 + /TCF1 + precursor exhausted T cells, which were absent in control mice. We demonstrate the utility of this model in two distinct therapeutic contexts. First, we found that high baseline frequencies of TA-specific T cells blunted the efficacy of a T-cell bispecific antibody (TCB), suggesting that pre-existing exhaustion limits TCB activity. Furthermore, the model enabled the evaluation of costimulatory agonists (FAP-CD40 and FAP-4-1BBL), and demonstrated their dependence on this T-cell compartment for antitumor efficacy.

This adaptable and physiologically relevant model provides a platform to dissect the complex interplay between human tumors, immune cells, and immunotherapies and has the potential to significantly improve the translation of preclinical findings to the clinic.

论文信息

作者
Gebhardt S、Le Clech M、Höllbacher B、Brunner S、Varol A、Lang S、Jenni S、Briner S
单位
Roche Pharma Research and Early Development (pRED), Roche Innovation Center Zurich, Schlieren, Switzerland samuel.gebhardt@roche.com.Switzerland
期刊
Journal for immunotherapy of cancer2026 Apr 15
原文标识
PubMed 41986069 · DOI 10.1136/jitc-2025-013989