体内标记解决了肿瘤巨噬细胞不同的时间、空间和功能特性,并确定了PD-L1阻断的亚群特异性效应。

IF 8.2 1区 医学 Q1 IMMUNOLOGY
Colin Y C Lee, Isaac Dean, Nathan Richoz, Zhi Li, Bethany C Kennedy, Lisa A Vettore, Youhani Samarakoon, Kathryn L Gilroy, Tetsuo Hasegawa, Gianluca Carlesso, Scott A Hammond, Simon J Dovedi, Owen J Sansom, Zewen K Tuong, Timotheus Y F Halim, David R Withers, Menna R Clatworthy
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引用次数: 0

摘要

肿瘤相关巨噬细胞(tam)是癌症的普遍特征,但对结果和治疗反应的影响各不相同。在这里,我们使用光转换小鼠来区分新进入的单核细胞衍生的(md) tam,这些tam富集于肿瘤核心,而驻留样(r) tam则定位于肿瘤-正常界面的成纤维细胞。mdTAM池是高度动态的,并不断被循环的单核细胞补充。进入肿瘤后,这些单核细胞沿着两条不同的命运轨迹分化,这两条轨迹由MHC II类的表达来区分。MHC-II+ mdtam在功能上不同于MHC-II- mdtam,表现出更大的内吞能力和fc γ r介导的吞噬能力,以及促炎细胞因子的产生。随着肿瘤生存时间的延长,两个mdTAM亚群的炎症转录物表达减少,PD-L1表达增加。抗pd - l1治疗使mdTAM向MHC-II+方向分化,并减弱肿瘤环境的抗炎作用。抗pd - l1增强mdTAM-CD4+ t细胞相互作用,建立ifn γ- cxcl9 /10依赖的正反馈回路。总之,这些数据解析了tam不同的时间、空间和功能特性,并提供了PD-L1阻断的亚群特异性效应的证据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In Vivo Labeling Resolves Distinct Temporal, Spatial, and Functional Properties of Tumor Macrophages and Identifies Subset-Specific Effects of PD-L1 Blockade.

Tumor-associated macrophages (TAM) are a universal feature of cancers but variably influence outcomes and treatment responses. In this study, we used a photoconvertible mouse to distinguish newly entering, monocyte-derived TAMs (mdTAM) that were enriched at the tumor core from resident-like TAMs that localized with fibroblasts at the tumor-normal interface. The mdTAM pool was highly dynamic and continually replenished by circulating monocytes. Upon tumor entry, these monocytes differentiated down two divergent fate trajectories distinguished by the expression of MHC class II. MHC-II+ mdTAMs were functionally distinct from MHC-II- mdTAMs, demonstrating increased capacity for endocytosis and Fc-gamma receptor-mediated phagocytosis, as well as proinflammatory cytokine production. Both mdTAM subsets showed reduced expression of inflammatory transcripts and increased expression of PD-L1 with increasing tumor dwell time. Treatment with anti-PD-L1 skewed mdTAM differentiation toward the MHC-II+ fate and attenuated the anti-inflammatory effects of the tumor environment. Anti-PD-L1 enhanced mdTAM-CD4+ T cell interactions, establishing an IFNγ-CXCL9/10-dependent positive feedback loop. Altogether, these data resolve distinct temporal, spatial, and functional properties of TAMs and provide evidence of subset-specific effects of PD-L1 blockade.

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来源期刊
Cancer immunology research
Cancer immunology research ONCOLOGY-IMMUNOLOGY
CiteScore
15.60
自引率
1.00%
发文量
260
期刊介绍: Cancer Immunology Research publishes exceptional original articles showcasing significant breakthroughs across the spectrum of cancer immunology. From fundamental inquiries into host-tumor interactions to developmental therapeutics, early translational studies, and comprehensive analyses of late-stage clinical trials, the journal provides a comprehensive view of the discipline. In addition to original research, the journal features reviews and opinion pieces of broad significance, fostering cross-disciplinary collaboration within the cancer research community. Serving as a premier resource for immunology knowledge in cancer research, the journal drives deeper insights into the host-tumor relationship, potent cancer treatments, and enhanced clinical outcomes. Key areas of interest include endogenous antitumor immunity, tumor-promoting inflammation, cancer antigens, vaccines, antibodies, cellular therapy, cytokines, immune regulation, immune suppression, immunomodulatory effects of cancer treatment, emerging technologies, and insightful clinical investigations with immunological implications.
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