铜配合物在癌症治疗中的应用。

Delphine Denoyer, Sharnel A S Clatworthy, Michael A Cater
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引用次数: 71

摘要

在原核和真核细胞中,铜稳态受到严格调节,以确保有足够的铜蛋白生物合成,同时限制氧化应激的产生和毒性。在上个世纪,铜配合物已被开发用于抗菌剂和治疗涉及铜平衡失调的疾病(如威尔逊氏病)。现在存在一种铜络合物,可以通过无数的机制调节体内的铜。此外,目前正在对许多铜配合物进行各种治疗适应症(例如,阿尔茨海默病和肌萎缩侧索硬化症)的评估,这些适应症需要一系列与铜相关的药理作用。癌症治疗也引起了相当大的关注,因为铜被认为是癌症发展的多个方面的限制因素,包括生长、血管生成和转移。因此,“老铜配合物”(如四硫钼酸盐和氯喹诺)已被重新用于癌症治疗,并在体外和临床前模型中显示出抗癌活性。同样,新的定制铜配合物已经根据其抗癌活性的结构和生物学特性而设计出来。人体临床试验继续评估铜配合物作为抗癌药物的治疗效果,并在了解其药理需求方面取得了相当大的进展。在本章中,我们从历史的角度介绍了目前被重新用于癌症治疗的主要铜配合物,并详细介绍了最近开发的几种有希望成为抗癌剂的化合物。我们进一步概述了已知的作用机制,包括分子靶点,并讨论了相关的临床试验。
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Copper Complexes in Cancer Therapy.

Copper homeostasis is tightly regulated in both prokaryotic and eukaryotic cells to ensure sufficient amounts for cuproprotein biosynthesis, while limiting oxidative stress production and toxicity. Over the last century, copper complexes have been developed as antimicrobials and for treating diseases involving copper dyshomeostasis (e.g., Wilson's disease). There now exists a repertoire of copper complexes that can regulate bodily copper through a myriad of mechanisms. Furthermore, many copper complexes are now being appraised for a variety of therapeutic indications (e.g., Alzheimer's disease and amyotrophic lateral sclerosis) that require a range of copper-related pharmacological affects. Cancer therapy is also drawing considerable attention since copper has been recognized as a limiting factor for multiple aspects of cancer progression including growth, angiogenesis, and metastasis. Consequently, 'old copper complexes' (e.g., tetrathiomolybdate and clioquinol) have been repurposed for cancer therapy and have demonstrated anticancer activity in vitro and in preclinical models. Likewise, new tailor-made copper complexes have been designed based on structural and biological features ideal for their anticancer activity. Human clinical trials continue to evaluate the therapeutic efficacy of copper complexes as anticancer agents and considerable progress has been made in understanding their pharmacological requirements. In this chapter, we present a historical perspective on the main copper complexes that are currently being repurposed for cancer therapy and detail several of the more recently developed compounds that have emerged as promising anticancer agents. We further provide an overview of the known mechanisms of action, including molecular targets and we discuss associated clinical trials.

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