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Molecular Strategies for Targeting Antioxidants to Mitochondria: Therapeutic Implications

机译:靶向线粒体抗氧化剂的分子策略:治疗意义。

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Mitochondrial function and specifically its implication in cellular redox/oxidative balance is fundamental in controlling the life and death of cells, and has been implicated in a wide range of human pathologies. In this context, mitochondrial therapeutics, particularly those involving mitochondria-targeted antioxidants, have attracted increasing interest as potentially effective therapies for several human diseases. For the past 10 years, great progress has been made in the development and functional testing of molecules that specifically target mitochondria, and there has been special focus on compounds with antioxidant properties. In this review, we will discuss several such strategies, including molecules conjugated with lipophilic cations (e.g., triphenylphosphonium) or rhodamine, conjugates of plant alkaloids, amino-acid- and peptide-based compounds, and liposomes. This area has several major challenges that need to be confronted. Apart from antioxidants and other redox active molecules, current research aims at developing compounds that are capable of modulating other mitochondria-controlled processes, such as apoptosis and autophagy. Multiple chemically different molecular strategies have been developed as delivery tools that offer broad opportunities for mitochondrial manipulation. Additional studies, and particularly in vivo approaches under physiologically relevant conditions, are necessary to confirm the clinical usefulness of these molecules. Antioxid. Redox Signal. 22, 686-729.
机译:线粒体功能,特别是其在细胞氧化还原/氧化平衡中的意义,对控制细胞的生命和死亡至关重要,并且已牵涉到广泛的人类病理学中。在这种情况下,线粒体疗法,特别是涉及针对线粒体靶向的抗氧化剂的疗法,已经作为对几种人类疾病的潜在有效疗法而引起了越来越多的关注。在过去的十年中,专门针对线粒体的分子的开发和功能测试取得了巨大进展,并且特别关注了具有抗氧化特性的化合物。在这篇综述中,我们将讨论几种这样的策略,包括与亲脂性阳离子(例如三苯基phosph)或若丹明偶联的分子,植物生物碱,氨基酸和肽基化合物以及脂质体的偶联物。这个领域有几个主要挑战需要面对。除了抗氧化剂和其他氧化还原活性分子,当前的研究目标是开发能够调节其他线粒体控制过程(例如细胞凋亡和自噬)的化合物。已经开发出多种化学上不同的分子策略作为递送工具,为线粒体操作提供了广泛的机会。必须进行其他研究,尤其是在生理相关条件下的体内方法,才能确认这些分子的临床实用性。抗氧化。氧化还原信号。 22,686-729。

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