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Inducible nitric oxide synthase-derived extracellular nitric oxide flux regulates proinflammatory responses at the single cell level

机译:诱导型一氧化氮合酶来源的细胞外一氧化氮通量在单细胞水平上调节促炎反应

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摘要

The role of nitric oxide (NO) in cancer progression has largely been studied in the context of tumor NOS2 expression. However, pro- versus anti-tumor signaling is also affected by tumor cell-macrophage interactions. While these cell-cell interactions are partly regulated by NO, the functional effects of NO flux on proinflammatory (M1) macrophages are unknown. Using a triple negative murine breast cancer model, we explored the potential role of macrophage Nos2 on 4T1 tumor progression. The effects of NO on macrophage phenotype were examined in bone marrow derived macrophages from wild type and Nos2 mice following stimulation with cytokine/LPS combinations to produce low, medium, and high NO flux. Remarkably, Nos2 induction was spatially distinct, where Nos2 cells expressed low cyclooxygenase-2 (Cox2) and vice versa. Importantly, M1 polarization with IFNγ+LPS induced high NO flux that was restricted to cells harboring depolarized mitochondria. This flux altered the magnitude and spatial extent of hypoxic gradients. Metabolic and single cell analyses demonstrated that single cell Nos2 induction limited the generation of hypoxic gradients , and Nos2-dependent and independent features may collaborate to regulate M1 functionality. It was found that Cox2 expression was important for Nos2 cells to maintain NO tolerance. Furthermore, Nos2 and Cox2 expression in 4T1 mouse tumors was spatially orthogonal forming distinct cellular neighborhoods. In summary, the location and type of Nos2 cells, NO flux, and the inflammatory status of other cells, such as Cox2 cells in the tumor niche contribute to Nos2 inflammatory mechanisms that promote disease progression of 4T1 tumors.
机译:一氧化氮(NO)在癌症进展中的作用已在肿瘤NOS2表达的背景下进行了大量研究。然而,抗肿瘤信号转抗信号也受肿瘤细胞-巨噬细胞相互作用的影响。虽然这些细胞之间的相互作用部分受NO的调节,但NO流量对促炎性(M1)巨噬细胞的功能影响尚不清楚。使用三阴性小鼠乳腺癌模型,我们探讨了巨噬细胞Nos2对4T1肿瘤进展的潜在作用。用细胞因子/ LPS组合刺激产生低,中和高NO通量后,在野生型和Nos2小鼠的骨髓衍生巨噬细胞中检查了NO对巨噬细胞表型的影响。值得注意的是,Nos2诱导在空间上是不同的,其中Nos2细胞表达低环氧合酶2(Cox2),反之亦然。重要的是,用IFNγ+ LPS进行的M1极化诱导了高NO通量,该通量仅限于带有去极化线粒体的细胞。该通量改变了低氧梯度的大小和空间范围。代谢和单细胞分析表明,单细胞Nos2诱导限制了低氧梯度的产生,而依赖Nos2的和独立的功能可能协同调节M1功能。发现Cox2表达对于Nos2细胞维持NO耐受性是重要的。此外,Nos2和Cox2在4T1小鼠肿瘤中的表达在空间上正交,形成不同的细胞邻域。总之,Nos2细胞的位置和类型,NO通量以及肿瘤小生境中其他细胞(例如Cox2细胞)的炎性状态有助于Nos2炎性机制,从而促进4T1肿瘤的疾病进展。

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