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The quest for selective nox inhibitors and therapeutics: Challenges, triumphs and pitfalls

机译:对选择性NOx抑制剂和治疗剂的追求:挑战,胜利和陷阱

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Significance: Numerous studies in animal models and human subjects corroborate that elevated levels of reactive oxygen species (ROS) play a pivotal role in the progression of multiple diseases. As a major source of ROS in many organ systems, the NADPH oxidase (Nox) has become a prime target for therapeutic development. Recent Advances: In recent years, intense efforts have been dedicated to the development of pan- and isoform-specific Nox inhibitors as opposed to antioxidants that proved ineffective in clinical trials. Over the past decade, an array of compounds has been proposed in an attempt to fill this void. Critical Issues: Although many of these compounds have proven effective as Nox enzyme family inhibitors, isoform specificity has posed a formidable challenge to the scientific community. This review surveys the most prominent Nox inhibitors, and discusses potential isoform specificity, known mechanisms of action, and shortcomings. Some of these inhibitors hold substantial promise as targeted therapeutics. Future Directions: Increased insight into the mechanisms of action and regulation of this family of enzymes as well as atomic structures of key Nox subunits are expected to give way to a broader spectrum of more potent, efficacious, and specific molecules. These lead molecules will assuredly serve as a basis for drug development aimed at treating a wide array of diseases associated with increased Nox activity. Antioxid. Redox Signal. 20, 2741-2754.
机译:意义:在动物模型和人类受试者中进行的大量研究证实,活性氧水平(ROS)升高在多种疾病的进展中起着关键作用。作为许多器官系统中ROS的主要来源,NADPH氧化酶(Nox)已成为治疗发展的主要目标。最新进展:近年来,与在临床试验中被证明无效的抗氧化剂相反,人们致力于开发泛和异构体特异性Nox抑制剂。在过去的十年中,已经提出了一系列化合物以试图填补这一空白。关键问题:尽管许多化合物已被证明能有效作为Nox酶家族抑制剂,但同工型的特异性却对科学界提出了严峻的挑战。这篇综述调查了最主要的Nox抑制剂,并讨论了潜在的亚型特异性,已知的作用机理和缺点。这些抑制剂中的一些作为靶向治疗剂具有很大的前景。未来方向:对该酶家族的作用和调节机制以及关键Nox亚基的原子结构的深入了解有望让位给更广泛,更有效,更具体的分子。这些先导分子必将作为药物开发的基础,旨在治疗与Nox活性增加相关的多种疾病。抗氧化。氧化还原信号。 20,2741-2754。

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