Signalling ISP, Babraham Institute, Babraham Research Campus, Cambridge, Cambridgeshire, United Kingdom.
Immunology Frontier Research Center, Osaka University, Osaka, Japan.
JCI Insight. 2018 Jun 7;3(11). doi: 10.1172/jci.insight.120631.
Redundancy and compensation provide robustness to biological systems but may contribute to therapy resistance. Both tumor-associated macrophages (TAMs) and Foxp3+ regulatory T (Treg) cells promote tumor progression by limiting antitumor immunity. Here we show that genetic ablation of CSF1 in colorectal cancer cells reduces the influx of immunosuppressive CSF1R+ TAMs within tumors. This reduction in CSF1-dependent TAMs resulted in increased CD8+ T cell attack on tumors, but its effect on tumor growth was limited by a compensatory increase in Foxp3+ Treg cells. Similarly, disruption of Treg cell activity through their experimental ablation produced moderate effects on tumor growth and was associated with elevated numbers of CSF1R+ TAMs. Importantly, codepletion of CSF1R+ TAMs and Foxp3+ Treg cells resulted in an increased influx of CD8+ T cells, augmentation of their function, and a synergistic reduction in tumor growth. Further, inhibition of Treg cell activity either through systemic pharmacological blockade of PI3Kδ, or its genetic inactivation within Foxp3+ Treg cells, sensitized previously unresponsive solid tumors to CSF1R+ TAM depletion and enhanced the effect of CSF1R blockade. These findings identify CSF1R+ TAMs and PI3Kδ-driven Foxp3+ Treg cells as the dominant compensatory cellular components of the immunosuppressive tumor microenvironment, with implications for the design of combinatorial immunotherapies.
冗余和补偿为生物系统提供了鲁棒性,但可能导致治疗耐药性。肿瘤相关巨噬细胞(TAMs)和 Foxp3+调节性 T(Treg)细胞通过限制抗肿瘤免疫促进肿瘤进展。在这里,我们表明,在结直肠癌细胞中敲除 CSF1 可减少肿瘤内免疫抑制性 CSF1R+TAMs 的浸润。CSF1 依赖性 TAMs 的减少导致 CD8+T 细胞对肿瘤的攻击增加,但由于 Foxp3+Treg 细胞的代偿性增加,其对肿瘤生长的影响受到限制。同样,通过实验消融破坏 Treg 细胞活性会对肿瘤生长产生适度影响,并与 CSF1R+TAMs 数量增加相关。重要的是,CSF1R+TAMs 和 Foxp3+Treg 细胞的共耗竭导致 CD8+T 细胞的大量涌入,增强其功能,并协同减少肿瘤生长。此外,通过全身性药理学阻断 PI3Kδ 或在 Foxp3+Treg 细胞内进行其基因失活来抑制 Treg 细胞活性,可使先前无反应的实体瘤对 CSF1R+TAM 耗竭敏感,并增强 CSF1R 阻断的效果。这些发现确定了 CSF1R+TAMs 和 PI3Kδ 驱动的 Foxp3+Treg 细胞是免疫抑制性肿瘤微环境中主要的代偿性细胞成分,这对组合免疫疗法的设计具有重要意义。