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首页> 外文期刊>Antioxidants and redox signalling >Small-molecule NOX inhibitors: ROS-generating NADPH oxidases as therapeutic targets.
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Small-molecule NOX inhibitors: ROS-generating NADPH oxidases as therapeutic targets.

机译:小分子NOX抑制剂:产生ROS的NADPH氧化酶作为治疗靶标。

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摘要

NOX NADPH oxidases are electron-transporting membrane enzymes whose primary function is the generation of reactive oxygen species (ROS). ROS produced by NOX enzymes show a variety of biologic functions, such as microbial killing, blood pressure regulation, and otoconia formation. Strong evidence suggests that NOX enzymes are major contributors to oxidative damage in pathologic conditions. Blocking the undesirable actions of NOX enzymes, therefore, is a therapeutic strategy for treating oxidative stress-related pathologies, such as ischemia/reperfusion tissue injury, and neurodegenerative and metabolic diseases. Most currently available NOX inhibitors have low selectivity, potency, and bioavailability, precluding a pharmacologic demonstration of NOX as therapeutic targets in vivo. This review has two main purposes. First, we describe a systematic approach that we believe should be followed in the search for truly selective NOX inhibitors. Second, we present a critical review of small-molecule NOX inhibitors described over the last two decades, including recently published patents from the pharmaceutical industry. Structures, activities, and in vitro/in vivo specificity of these NOX inhibitors are discussed. We conclude that NOX inhibition is a pertinent and promising novel pharmacologic concept, but that major efforts will be necessary to develop specific NOX inhibitors suited for clinical application.
机译:NOX NADPH氧化酶是一种电子传输膜酶,其主要功能是产生活性氧(ROS)。由NOX酶产生的ROS具有多种生物学功能,例如微生物杀灭,血压调节和耳垢形成。有力的证据表明,NOX酶是病理条件下氧化损伤的主要因素。因此,阻断NOX酶的不良作用是治疗与氧化应激相关的病理学例如缺血/再灌注组织损伤以及神经变性和代谢性疾病的治疗策略。目前,大多数可利用的NOX抑制剂的选择性,效力和生物利用度均较低,这排除了NOX作为体内治疗靶点的药理学证明。这篇评论有两个主要目的。首先,我们描述一种系统的方法,我们认为在寻找真正的选择性NOX抑制剂时应该遵循该方法。其次,我们对过去20年中描述的小分子NOX抑制剂进行了严格的审查,其中包括最近发表的制药行业专利。讨论了这些NOX抑制剂的结构,活性和体外/体内特异性。我们得出的结论是,抑制NOX是一个相关且有前途的新颖药理学概念,但是开发适用于临床应用的特定NOX抑制剂将需要作出重大努力。

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