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微免疫反应芯片(MIRO)用于模拟肿瘤-基质界面以进行免疫治疗测试。

Micro Immune Response On-chip (MIRO) models the tumour-stroma interface for immunotherapy testing.

作者信息

Perucca Alice, Llonín Andrea Gómez, Benach Oriol Mañé, Hallopeau Clement, Rivas Elisa I, Linares Jenniffer, Garrido Marta, Sallent-Aragay Anna, Golde Tom, Colombelli Julien, Dalaka Eleni, Linacero Judith, Cazorla Marina, Galan Teresa, Pastor Viel Jordi, Badenas Xavier, Recort-Bascuas Alba, Comerma Laura, Fernandez-Nogueira Patricia, Rovira Ana, Roca-Cusachs Pere, Albanell Joan, Trepat Xavier, Calon Alexandre, Labernadie Anna

机构信息

Institute for Bioengineering of Catalonia (IBEC), The Barcelona Institute for Science and Technology (BIST), Barcelona, Spain.

Cancer Research Program, Hospital del Mar Research Institute (HMRIB), Barcelona, Spain.

出版信息

Nat Commun. 2025 Feb 3;16(1):1279. doi: 10.1038/s41467-025-56275-1.

Abstract

Immunotherapies are beneficial for a considerable proportion of cancer patients, but ineffective in others. In vitro modelling of the complex interactions between cancer cells and their microenvironment could provide a path to understanding immune therapy sensitivity and resistance. Here we develop MIRO, a fully humanised in vitro platform to model the spatial organisation of the tumour/stroma interface and its interaction with immune cells. We find that stromal barriers are associated with immune exclusion and protect cancer cells from antibody-dependent cellular cytotoxicity, elicited by targeted therapy. We demonstrate that IL2-driven immunomodulation increases immune cell velocity and spreading to overcome stromal immunosuppression and restores anti-cancer response in refractory tumours. Collectively, our study underscores the translational value of MIRO as a powerful tool for exploring how the spatial organisation of the tumour microenvironment shapes the immune landscape and influences the responses to immunomodulating therapies.

摘要

免疫疗法对相当一部分癌症患者有益,但对其他患者无效。癌细胞与其微环境之间复杂相互作用的体外建模可以为理解免疫疗法的敏感性和抗性提供一条途径。在这里,我们开发了MIRO,这是一个完全人源化的体外平台,用于模拟肿瘤/基质界面的空间组织及其与免疫细胞的相互作用。我们发现基质屏障与免疫排斥相关,并保护癌细胞免受靶向治疗引发的抗体依赖性细胞毒性作用。我们证明,白细胞介素2驱动的免疫调节可提高免疫细胞的速度和扩散能力,以克服基质免疫抑制,并恢复难治性肿瘤中的抗癌反应。总的来说,我们的研究强调了MIRO作为一种强大工具的转化价值,可用于探索肿瘤微环境的空间组织如何塑造免疫格局并影响对免疫调节疗法的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/681e/11790944/8c1d372c2723/41467_2025_56275_Fig1_HTML.jpg

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