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妇科癌症中的一氧化氮与pH调节

Nitric oxide and pH modulation in gynaecological cancer.

作者信息

Sanhueza Carlos, Araos Joaquín, Naranjo Luciano, Barros Eric, Subiabre Mario, Toledo Fernando, Gutiérrez Jaime, Chiarello Delia I, Pardo Fabián, Leiva Andrea, Sobrevia Luis

机构信息

Cellular and Molecular Physiology Laboratory (CMPL), Division of Obstetrics and Gynaecology, School of Medicine, Faculty of Medicine, Pontificia Universidad Católica de Chile, Santiago, Chile.

Department of Basic Sciences, Faculty of Sciences, Universidad del Bío-Bío, Chillán, Chile.

出版信息

J Cell Mol Med. 2016 Dec;20(12):2223-2230. doi: 10.1111/jcmm.12921. Epub 2016 Jul 29.

Abstract

Nitric oxide plays several roles in cellular physiology, including control of the vascular tone and defence against pathogen infection. Neuronal, inducible and endothelial nitric oxide synthase (NOS) isoforms synthesize nitric oxide. Cells generate acid and base equivalents, whose physiological intracellular concentrations are kept due to membrane transport systems, including Na /H exchangers and Na /HCO transporters, thus maintaining a physiological pH at the intracellular (7.0) and extracellular (7.4) medium. In several pathologies, including cancer, cells are exposed to an extracellular acidic microenvironment, and the role for these membrane transport mechanisms in this phenomenon is likely. As altered NOS expression and activity is seen in cancer cells and because this gas promotes a glycolytic phenotype leading to extracellular acidosis in gynaecological cancer cells, a pro-inflammatory microenvironment increasing inducible NOS expression in this cell type is feasible. However, whether abnormal control of intracellular and extracellular pH by cancer cells regards with their ability to synthesize or respond to nitric oxide is unknown. We, here, discuss a potential link between pH alterations, pH controlling membrane transport systems and NOS function. We propose a potential association between inducible NOS induction and Na /H exchanger expression and activity in human ovary cancer. A potentiation between nitric oxide generation and the maintenance of a low extracellular pH (i.e. acidic) is proposed to establish a sequence of events in ovarian cancer cells, thus preserving a pro-proliferative acidic tumour extracellular microenvironment. We suggest that pharmacological therapeutic targeting of Na /H exchangers and inducible NOS may have benefits in human epithelial ovarian cancer.

摘要

一氧化氮在细胞生理学中发挥多种作用,包括控制血管张力和抵御病原体感染。神经元型、诱导型和内皮型一氧化氮合酶(NOS)同工型可合成一氧化氮。细胞会产生酸碱等价物,由于包括钠/氢交换体和钠/碳酸氢根转运体在内的膜转运系统,其生理细胞内浓度得以维持,从而在细胞内(约7.0)和细胞外(约7.4)介质中维持生理pH值。在包括癌症在内的多种病理状态下,细胞会暴露于细胞外酸性微环境中,这些膜转运机制在这一现象中的作用很可能存在。由于在癌细胞中观察到一氧化氮合酶表达和活性的改变,且这种气体促进糖酵解表型导致妇科癌细胞出现细胞外酸中毒,因此促炎微环境增加这种细胞类型中诱导型一氧化氮合酶的表达是可行的。然而,癌细胞对细胞内和细胞外pH值的异常调控是否与其合成或响应一氧化氮的能力有关尚不清楚。在此,我们讨论pH值改变、控制pH值的膜转运系统与一氧化氮合酶功能之间的潜在联系。我们提出在人卵巢癌中诱导型一氧化氮合酶的诱导与钠/氢交换体的表达和活性之间可能存在关联。有人提出一氧化氮生成与维持低细胞外pH值(即酸性)之间存在增强作用,从而在卵巢癌细胞中建立一系列事件,进而维持促增殖的酸性肿瘤细胞外微环境。我们认为,对钠/氢交换体和诱导型一氧化氮合酶进行药物治疗靶向可能对人上皮性卵巢癌有益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fbba/5134382/8ca0c9db1178/JCMM-20-2223-g001.jpg

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