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首页> 外文期刊>Cancer immunology research. >Role of NOX2-Derived Reactive Oxygen Species in NK Cell-Mediated Control of Murine Melanoma Metastasis
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Role of NOX2-Derived Reactive Oxygen Species in NK Cell-Mediated Control of Murine Melanoma Metastasis

机译:NOX2-衍生的反应性氧在NK细胞介导的鼠黑素瘤转移中的作用

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摘要

The NADPH oxidase of myeloid cells, NOX2, generates reactive oxygen species (ROS) to eliminate pathogens and malignant cells. NOX2-derived ROS have also been proposed to dampen functions of natural killer (NK) cells and other antineoplastic lymphocytes in the microenvironment of established tumors. The mechanisms by which NOX2 and ROS influence the process of distant metastasis have only been partially explored. Here, we utilized genetically NOX2-deficient mice and pharmacologic inhibition of NOX2 to elucidate the role of NOX2 for the hematogenous metastasis of melanoma cells. After intravenous inoculation of B16F1 or B16F10 cells, lung metastasis formation was reduced in B6.129S6 Cybb(m1DinK) (Nox2-KO) versus Nox2-sufficient wild-type (WT) mice. Systemic treatment with the NOX2-inhibitor histamine dihydrochloride (HDC) reduced melanoma metastasis and enhanced the infiltration of IFN gamma-producing NK cells into lungs of WT but not of Nox2-KO mice. IFN gamma-deficient B6.129S7-Ifngt(m1Ts)/ J mice were prone to develop melanoma metastases and did not respond to in vivo treatment with HDC. We propose that NOX2-derived ROS facilitate metastasis of melanoma cells by downmodulating NK-cell function and that inhibition of NOX2 may restore IFN gamma-dependent, NK cell-mediated clearance of melanoma cells. (C) 2017 AACR.
机译:NADPH氧化酶NOX2 NOX2产生反应性氧物质(ROS)以消除病原体和恶性细胞。还提出了NOX2衍生的ROS来抑制自然杀伤(NK)细胞和其他抗肿瘤淋巴细胞在已建立的肿瘤的微环境中的功能。 NOx2和ROS影响远处转移过程的机制仅被部分探索。在这里,我们利用了NOx2的遗传nox2缺陷的小鼠和药理抑制,以阐明NOx2对黑素瘤细胞的血源转移的作用。在B16F1或B16F10细胞的静脉内接种后,B6.129S6 CybB(M1dink)(NOx2-KO)与NOx2 - 足够的野生型(WT)小鼠的肺转移形成。用NOx2抑制剂组胺的二盐酸盐(HDC)的全身治疗减少了黑素瘤转移,并增强了IFNγ的NK细胞的渗透到WT的WT但不具有NOX2-KO小鼠的肺部。 IFNγ缺乏B6.129S7-IFNGT(M1TS)/ J小鼠容易发生黑色素瘤转移,并且没有用HDC进行体内处理。我们提出NOX2衍生的ROS通过折叠NK细胞功能促进黑素瘤细胞的转移,并且NOX2的抑制可以恢复IFNγ依赖性的NK细胞介导的黑素瘤细胞的间隙。 (c)2017年AACR。

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