Velkova Irena, Pasino Martina, Khalid Zumama, Menichini Paola, Martorana Emanuele, Izzotti Alberto, Pulliero Alessandra
IRCCS Ospedale Policlinico San Martino, 16132 Genova, Italy.
Department of Health Sciences, University of Genoa, 16132 Genoa, Italy.
J Pers Med. 2023 Apr 24;13(5):719. doi: 10.3390/jpm13050719.
Ferroptosis is a cell death pathway triggered by an imbalance between the production of oxidants and antioxidants, which plays an emerging role in tumorigenesis. It is mainly regulated at three different levels including iron metabolism, the antioxidant response, and lipid metabolism. Epigenetic dysregulation is a "hallmark" of human cancer, with nearly half of all human cancers harboring mutations in epigenetic regulators such as microRNA. While being the crucial player in controlling gene expression at the mRNA level, microRNAs have recently been shown to modulate cancer growth and development via the ferroptosis pathway. In this scenario, some miRNAs have a function in upregulating, while others play a role in inhibiting ferroptosis activity. The investigation of validated targets using the miRBase, miRTarBase, and miRecords platforms identified 13 genes that appeared enriched for iron metabolism, lipid peroxidation, and antioxidant defense; all are recognized contributors of tumoral suppression or progression phenotypes. This review summarizes and discuss the mechanism by which ferroptosis is initiated through an imbalance in the three pathways, the potential function of microRNAs in the control of this process, and a description of the treatments that have been shown to have an impact on the ferroptosis in cancer along with potential novel effects.
铁死亡是一种由氧化剂和抗氧化剂产生失衡引发的细胞死亡途径,在肿瘤发生过程中发挥着越来越重要的作用。它主要在三个不同层面受到调控,包括铁代谢、抗氧化反应和脂质代谢。表观遗传失调是人类癌症的一个“标志”,几乎一半的人类癌症在诸如微小RNA等表观遗传调节因子中存在突变。微小RNA虽然是在mRNA水平控制基因表达的关键因素,但最近已显示其可通过铁死亡途径调节癌症的生长和发展。在这种情况下,一些微小RNA具有上调功能,而另一些则在抑制铁死亡活性中发挥作用。使用miRBase、miRTarBase和miRecords平台对经过验证的靶点进行研究,确定了13个在铁代谢、脂质过氧化和抗氧化防御方面富集的基因;所有这些基因都是肿瘤抑制或进展表型的公认影响因素。本综述总结并讨论了通过三种途径失衡引发铁死亡的机制、微小RNA在控制这一过程中的潜在功能,以及已证明对癌症铁死亡有影响的治疗方法及其潜在的新作用。