Dickerson Tyler, Jauregui Catherine E, Teng Yong
College of Science & Mathematics, Augusta University, Augusta, GA 30912, USA.
Department of Oral Biology, Dental College of Georgia, Augusta University, Augusta, GA 30912, USA.
Future Med Chem. 2017 Dec;9(18):2197-2210. doi: 10.4155/fmc-2017-0110. Epub 2017 Nov 28.
Mitochondria have acquired numerous functions over the course of evolution, such as those involved in controlling energy production, cellular metabolism, cell survival, apoptosis and autophagy within host cells. Tumor cells can develop defects in mitochondrial function, presenting a potential strategy for designing selective anticancer therapies. Therefore, cancer has been the main focus of recent research to uncover possible mitochondrial targets for therapeutic benefit. This comprehensive review covers not only the recent discoveries of the roles of mitochondria in cancer development, progression and therapeutic implications but also the findings regarding emerging mitochondrial therapeutic targets and mitochondria-targeted agents. Current challenges and future directions for developments and applications of mitochondrial-targeted therapeutics are also discussed.
在进化过程中,线粒体获得了众多功能,例如参与控制宿主细胞内的能量产生、细胞代谢、细胞存活、细胞凋亡和自噬。肿瘤细胞的线粒体功能可能出现缺陷,这为设计选择性抗癌疗法提供了潜在策略。因此,癌症一直是近期研究的主要焦点,旨在发现可能具有治疗益处的线粒体靶点。这篇综述不仅涵盖了线粒体在癌症发生、发展和治疗意义方面作用的最新发现,还包括有关新兴线粒体治疗靶点和线粒体靶向药物的研究结果。同时也讨论了线粒体靶向治疗药物开发和应用面临的当前挑战及未来方向。