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肿瘤分泌的细胞外囊泡通过触发炎性间充质干细胞发育削弱治疗应答

英文原题:Tumor-Secreted Extracellular Vesicles Counteract Therapy Response by Triggering Inflammatory Mesenchymal Stem Cell Development.

PubMed 2024/10/15(内容时间) Clin Cancer Res Q1 · IF 10.9(JCR 2025)

研究概要

我们的观察结果确立了iMSCs是导致耐药性的主要因素,揭示了EVs是触发iMSC发展的因素,并强调了一种有前景的联合策略,以提高骨癌患者的治疗反应。

研究思路结论见上方概要

治疗耐药是骨癌治疗中的主要临床难题,并且似乎主要由人们了解甚少的微环境因素驱动。近期证据提示,具有炎症特征的间充质干细胞的一个独特亚群(iMSC)发挥关键作用,尽管其起源和功能仍未得到探索。我们证明,癌症分泌的细胞外囊泡(EV)触发 iMSCs 的形成,而 iMSCs 在体内阻碍治疗反应,并着手确定抵消其功能的策略。

在骨肉瘤原位异种移植小鼠模型中评估了iMSCs在治疗耐药中的作用。分析了EV诱导的MSC转录组改变,并与骨肉瘤和多发性骨髓瘤患者活检的单细胞RNA测序数据进行了比较。功能测定确定了驱动iMSC发展的EV成分。我们评估了临床药物在体内阻断iMSC诱导的耐药方面的疗效。

我们发现,iMSCs 通过与肿瘤 EVs 相互作用而被诱导,并完全消除 TGF 信号抑制的抗转移效应。重要的是,EV 诱导的 iMSCs 忠实地重现了多发性骨髓瘤和骨肉瘤患者活检中富集的基质细胞的炎症性单细胞 RNA 特征。从机制上讲,肿瘤 EVs 通过两种不同的机制发挥作用。EV 相关 TGF 诱导 IL6 产生,而 EV-RNA 货物增强 TLR3 介导的趋化因子产生。我们揭示,用 ladarixin 和 tocilizumab 同时阻断 EV 激活的下游通路,可破坏转移形成并克服 iMSC 诱导的耐药。

展开英文摘要原文

PURPOSE: Therapy resistance is a major clinical hurdle in bone cancer treatment and seems to be largely driven by poorly understood microenvironmental factors. Recent evidence suggests a critical role for a unique subpopulation of mesenchymal stem cells with inflammatory features (iMSC), though their origin and function remained unexplored. We demonstrate that cancer-secreted extracellular vesicles (EV) trigger the development of iMSCs, which hinder therapy response in vivo, and set out to identify strategies to counteract their function. EXPERIMENTAL DESIGN: The role of iMSCs in therapy resistance was evaluated in an orthotopic xenograft mouse model of osteosarcoma. EV-induced alterations of the MSC transcriptome were analyzed and compared with single-cell RNA sequencing data of biopsies from patients with osteosarcoma and multiple myeloma. Functional assays identified EV components driving iMSC development. We assessed the efficacy of clinical drugs in blocking iMSC-induced resistance in vivo. RESULTS: We found that iMSCs are induced by interaction with cancer EVs and completely abrogate the antimetastatic effect of TGF signaling inhibition. Importantly, EV-induced iMSCs faithfully recapitulate the inflammatory single-cell RNA signature of stromal cells enriched in biopsies from patients with multiple myeloma and osteosarcoma. Mechanistically, cancer EVs act through two distinct mechanisms. EV-associated TGF induces IL6 production, whereas the EV-RNA cargo enhances TLR3-mediated chemokine production. We reveal that simultaneous blockade of downstream EV-activated pathways with ladarixin and tocilizumab disrupts metastasis formation and overcomes iMSC-induced resistance. CONCLUSIONS: Our observations establish iMSCs as major contributors to drug resistance, reveal EVs as triggers of iMSC development, and highlight a promising combination strategy to improve therapy response in patients with bone cancer.

论文信息

作者
Massaro C、Sensoy HN、Mulders M、De Schrijver C、Gómez-Martín C、Simon Nieto J、Lagerweij T、Atmopawiro A
单位
Department of Pathology, Cancer Center Amsterdam, Amsterdam UMC, Vrije Universiteit Amsterdam, Amsterdam, the Netherlands.Netherlands
期刊
Clinical cancer research : an official journal of the American Association for Cancer Research2024 Oct 15
原文标识
PubMed 39115426 · DOI 10.1158/1078-0432.CCR-23-4097