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The Double-Faced Role of Nitric Oxide and Reactive Oxygen Species in Solid Tumors

机译:一氧化氮和反应性氧物种在实体瘤中的双面作用

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摘要

Disturbed redox homeostasis represents a hallmark of cancer phenotypes, affecting cellular metabolism and redox signaling. Since reactive oxygen and nitrogen species (ROS/RNS) are involved in regulation of proliferation and apoptosis, they may play a double-faced role in cancer, entailing protumorigenic and tumor-suppressing effects in early and later stages, respectively. In addition, ROS and RNS impact the activity and communication of all tumor constituents, mediating their reprogramming from anti- to protumorigenic phenotypes, and vice versa. An important role in this dichotomic action is played by the variable amounts of O2 in the tumor microenvironment, which dictates the ultimate outcome of the influence of ROS/RNS on carcinogenesis. Moreover, ROS/RNS levels remarkably influence the cancer response to therapy. The relevance of ROS/RNS signaling in solid tumors is witnessed by the emergence of novel targeted treatments of solid tumors with compounds that target ROS/RNS action and production, such as tyrosine kinase inhibitors and monoclonal antibodies, which might contribute to the complexity of redox regulation in cancer. Prospectively, the dual role of ROS/RNS in the different stages of tumorigenesis through different impact on oxidation and nitrosylation may also allow development of tailored diagnostic and therapeutic approaches.
机译:扰乱氧化还原平衡表示癌症表型的标志,影响细胞代谢和氧化还原信号。由于活性氧和氮物种(ROS / RNS)参与细胞增殖和凋亡的调节,它们可以发挥抗癌双面作用,将会导致在早期和后期阶段protumorigenic和肿瘤抑制效果,分别。此外,ROS和RNS影响所有肿瘤成分的活性和沟通,调解从防到protumorigenic表型的重新编程,反之亦然。在这种二分行动的一个重要作用是通过O2在肿瘤微环境中,这就决定ROS / RNS对致癌影响的最终结果的不同数量的播放。此外,ROS / RNS水平显着地影响所述癌症对治疗的反应。 ROS / RNS的实体瘤的信令的相关性是通过新颖的出现见证目标实体肿瘤的治疗用化合物的是目标ROS / RNS操作和生产,例如酪氨酸激酶抑制剂和单克隆抗体,这可能有助于氧化还原的复杂性调控癌症。前瞻性,在肿瘤的不同阶段,通过对氧化和亚硝基化不同的影响ROS / RNS的双重作用下也可以允许量身定制的诊断和治疗方法的发展。

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