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金属药物的催化抗氧化疗法:金属卟吩的经验教训

Catalytic antioxidant therapy by metallodrugs: lessons from metallocorroles.

作者信息

Haber Adi, Gross Zeev

机构信息

Schulich Faculty of Chemistry, Technion - Israel Institute of Technology, Technion City, Haifa 32000, Israel.

出版信息

Chem Commun (Camb). 2015 Apr 7;51(27):5812-27. doi: 10.1039/c4cc08715a. Epub 2015 Feb 9.

Abstract

SIGNIFICANCE

the fundamental science behind the "antioxidant therapy", i.e., the importance of eliminating oxidizing species that may damage vital biomolecules and induce biological malfunctions, is well established. Nevertheless, quite disappointing results were reported in several recent meta-analyses that addressed the effects of vitamins and other antioxidant supplements on the many diseases that are associated with oxidative events. This emphasizes the importance of elucidating factors that might be responsible for the large gap between the hypothesis and practice.

RECENT ADVANCES

classical "antioxidant therapy" deals with stoichiometric antioxidants whose role is sacrificial, i.e., they are consumed on a one-to-one basis by being oxidized instead of vital biomolecules. On the other hand, catalytic antioxidants detoxify the reactive species without being permanently oxidized, and one molecule may hence disarm numerous oxidants. The benefits of catalytic antioxidants in pure chemical systems and in animal models of many diseases are quite established and have been summarized in several reviews.

CRITICAL ISSUES

the main aim of this article is to provide a perspective on the utility of metal-based catalytic antioxidants, with a focus on those chelated by corroles, for disease prevention or treatment. Particular emphasis is on the often-ignored fact that redox-based therapeutics is potentially harmful because it may actually induce rather than decrease oxidative stress.

FUTURE DIRECTIONS

investigations aimed at identifying the factors that increase the antioxidant versus pro-oxidant potency of synthetic metal complexes are crucial for the optimal design of redox-based drug candidates that may be used for combating the numerous diseases that are affected by oxidative stress.

摘要

意义

“抗氧化疗法”背后的基础科学,即消除可能损害重要生物分子并引发生物功能紊乱的氧化物种的重要性,已得到充分确立。然而,最近的几项荟萃分析报告了相当令人失望的结果,这些分析探讨了维生素和其他抗氧化补充剂对与氧化事件相关的多种疾病的影响。这凸显了阐明可能导致假设与实践之间巨大差距的因素的重要性。

最新进展

经典的“抗氧化疗法”使用化学计量的抗氧化剂,其作用是牺牲性的,即它们通过被氧化而不是重要生物分子以一对一的方式被消耗。另一方面,催化抗氧化剂在不被永久氧化的情况下使反应性物种解毒,因此一个分子可以解除许多氧化剂的武装。催化抗氧化剂在纯化学系统和多种疾病的动物模型中的益处已得到充分证实,并在多篇综述中进行了总结。

关键问题

本文的主要目的是提供一个关于金属基催化抗氧化剂效用的观点,重点关注那些被咕啉螯合的抗氧化剂,用于疾病预防或治疗。特别强调经常被忽视的事实,即基于氧化还原的疗法可能具有潜在危害,因为它实际上可能会诱导而非降低氧化应激。

未来方向

旨在确定增加合成金属配合物抗氧化与促氧化效力的因素的研究,对于基于氧化还原的候选药物的优化设计至关重要,这些药物可用于对抗受氧化应激影响的多种疾病。

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