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利用溶瘤病毒重塑肿瘤微环境,正向调节免疫突触,阻断免疫抑制的致癌代谢通路。

Reshaping the tumor microenvironment with oncolytic viruses, positive regulation of the immune synapse, and blockade of the immunosuppressive oncometabolic circuitry.

机构信息

Department of Neuro-Oncology, The University of Texas MD Anderson Cancer Center, Houston, Texas, USA.

The University of Texas MD Anderson Cancer Center UTHealth Graduate School of Biomedical Sciences, Houston, Texas, USA.

出版信息

J Immunother Cancer. 2022 Jul;10(7). doi: 10.1136/jitc-2022-004935.

Abstract

BACKGROUND

Oncolytic viruses are considered part of immunotherapy and have shown promise in preclinical experiments and clinical trials. Results from these studies have suggested that tumor microenvironment remodeling is required to achieve an effective response in solid tumors. Here, we assess the extent to which targeting specific mechanisms underlying the immunosuppressive tumor microenvironment optimizes viroimmunotherapy.

METHODS

We used RNA-seq analyses to analyze the transcriptome, and validated the results using Q-PCR, flow cytometry, and immunofluorescence. Viral activity was analyzed by replication assays and viral titration. Kyn and Trp metabolite levels were quantified using liquid chromatography-mass spectrometry. Aryl hydrocarbon receptor (AhR) activation was analyzed by examination of promoter activity. Therapeutic efficacy was assessed by tumor histopathology and survival in syngeneic murine models of gliomas, including Indoleamine 2,3-dioxygenase (IDO)-/- mice. Flow cytometry was used for immunophenotyping and quantification of cell populations. Immune activation was examined in co-cultures of immune and cancer cells. T-cell depletion was used to identify the role played by specific cell populations. Rechallenge experiments were performed to identify the development of anti-tumor memory.

RESULTS

Bulk RNA-seq analyses showed the activation of the immunosuppressive IDO-kynurenine-AhR circuitry in response to Delta-24-RGDOX infection of tumors. To overcome the effect of this pivotal pathway, we combined Delta-24-RGDOX with clinically relevant IDO inhibitors. The combination therapy increased the frequency of CD8 T cells and decreased the rate of myeloid-derived suppressor cell and immunosupressive Treg tumor populations in animal models of solid tumors. Functional studies demonstrated that IDO-blockade-dependent activation of immune cells against tumor antigens could be reversed by the oncometabolite kynurenine. The concurrent targeting of the effectors and suppressors of the tumor immune landscape significantly prolonged the survival in animal models of orthotopic gliomas.

CONCLUSIONS

Our data identified for the first time the role of IDO-dependent immunosuppressive pathways in the resistance of solid tumors to oncolytic adenoviruses. Specifically, the IDO-Kyn-AhR activity was responsible for the resurface of local immunosuppression and resistance to therapy, which was ablated through IDO inhibition. Our data indicate that combined molecular and immune therapy may improve outcomes in human gliomas and other cancers treated with virotherapy.

摘要

背景

溶瘤病毒被认为是免疫疗法的一部分,在临床前实验和临床试验中显示出了潜力。这些研究的结果表明,需要重塑肿瘤微环境以实现在实体瘤中的有效反应。在这里,我们评估了针对肿瘤免疫抑制微环境的特定机制的靶向治疗在多大程度上优化了病毒免疫治疗。

方法

我们使用 RNA-seq 分析来分析转录组,并使用 Q-PCR、流式细胞术和免疫荧光进行验证。通过复制测定和病毒滴定分析病毒活性。使用液相色谱-质谱法定量测定犬尿氨酸和色氨酸代谢物水平。通过检查启动子活性分析芳基烃受体 (AhR) 的激活。通过对胶质母细胞瘤的同源小鼠模型中的肿瘤组织病理学和存活率进行评估来评估治疗效果,包括吲哚胺 2,3-双加氧酶 (IDO)-/- 小鼠。使用流式细胞术进行免疫表型分析和细胞群定量。在免疫和癌细胞的共培养物中检查免疫激活。使用 T 细胞耗竭来确定特定细胞群的作用。进行再挑战实验以确定抗肿瘤记忆的发展。

结果

批量 RNA-seq 分析显示,在 Delta-24-RGDOX 感染肿瘤时,免疫抑制 IDO-犬尿氨酸-AhR 通路被激活。为了克服这个关键途径的影响,我们将 Delta-24-RGDOX 与临床相关的 IDO 抑制剂联合使用。联合治疗增加了 CD8 T 细胞的频率,并降低了实体瘤动物模型中髓源性抑制细胞和免疫抑制 Treg 肿瘤细胞群的速率。功能研究表明,IDO 阻断依赖性的免疫细胞对肿瘤抗原的激活可以被肿瘤代谢物犬尿氨酸逆转。同时针对肿瘤免疫景观的效应物和抑制剂的靶向治疗显著延长了同源胶质母细胞瘤动物模型的存活时间。

结论

我们的数据首次确定了 IDO 依赖性免疫抑制途径在实体瘤对溶瘤腺病毒的耐药性中的作用。具体来说,IDO 依赖性免疫抑制途径负责局部免疫抑制和对治疗的抵抗的重新出现,通过 IDO 抑制可以消除这种免疫抑制和抵抗。我们的数据表明,联合分子和免疫治疗可能会改善接受病毒治疗的人类胶质母细胞瘤和其他癌症的治疗效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/354e/9341188/b7f95fb65bf6/jitc-2022-004935f01.jpg

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