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Peroxynitrite formation in radiation-induced salivary gland dysfunction in mice

机译:辐射引起的小鼠唾液腺功能障碍中的过氧亚硝酸盐形成

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Xerostomia frequently arises in patients with head and neck malignancies that are treated by radiation. However, the mechanisms responsible for the destruction of the salivary gland remain unknown. We previously established a xerostomia model of mice and identified the pathway through which nitric oxide (NO) affects the pathogenesis of radiation-induced salivary gland dysfunction. Although the toxicity of NO alone is modest, NO with superoxide anion (O2'~) rapidly forms peroxynitrite (ONOO~), a more powerful toxic oxidant In this study, we used the experimental model to examine: 1) when NO and O2' production is maximum in the salivary gland after irradiation; 2) whether peroxynitrite, as assessed by nitrotyrosine production, is responsible for salivary gland dysfunction; and 3) the effect of the iNOS selective inhibitor, aminoguanidine (AG), on nitrotyrosine formation. The increases in production of NO and O2' in the salivary gland peaked on day 7 after irradiation. Nitrotyrosine detected immunohistochemically was significantly reduced by AG in the salivary gland. On the basis of these results, we concluded that NO together with O2'~ forms the more reactive ONOO", which might be an important pathogenic factor in radiation-induced salivary gland dysfunction.
机译:口干症常发生在头颈部恶性肿瘤患者中,接受放射治疗。但是,造成唾液腺破坏的机制尚不清楚。我们先前建立了小鼠的口腔干燥症模型,并确定了一氧化氮(NO)通过其影响放射诱导的唾液腺功能障碍的发病机理的途径。尽管仅NO的毒性不大,但NO与超氧阴离子(O2'〜)迅速形成过氧亚硝酸盐(ONOO〜),后者是一种更强大的有毒氧化剂。在这项研究中,我们使用实验模型进行了研究:1)当NO和O2'辐射后唾液腺的产量最高; 2)通过硝基酪氨酸生产评估的过氧亚硝酸盐是否是唾液腺功能障碍的原因; 3)iNOS选择性抑制剂氨基胍(AG)对硝基酪氨酸形成的影响。唾液腺中NO和O2'的产量增加在照射后第7天达到峰值。唾液腺中AG显着降低了免疫组织化学检测的硝基酪氨酸。根据这些结果,我们得出结论:NO与O2'〜一起形成更具反应性的ONOO”,这可能是辐射诱发的唾液腺功能障碍的重要致病因素。

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