Vana Frantisek, Szabo Zoltan, Masarik Michal, Kratochvilova Monika
Department of Pathological Physiology, Faculty of Medicine, Masaryk University, Kamenice 5, Brno, CZ-625 00, Czech Republic.
Regional Centre for Applied Molecular Oncology, Masaryk Memorial Cancer Institute, Zluty kopec 7, Brno, 656 53, Czech Republic.
Cell Div. 2024 Aug 3;19(1):24. doi: 10.1186/s13008-024-00127-9.
Cell death is one of the most important mechanisms of maintaining homeostasis in our body. Ferroptosis and pyroptosis are forms of necrosis-like cell death. These cell death modalities play key roles in the pathophysiology of cancer, cardiovascular, neurological diseases, and other pathologies. Transition metals are abundant group of elements in all living organisms. This paper presents a summary of ferroptosis and pyroptosis pathways and their connection to significant transition metals, namely zinc (Zn), copper (Cu), molybdenum (Mo), lead (Pb), cobalt (Co), iron (Fe), cadmium (Cd), nickel (Ni), mercury (Hg), uranium (U), platinum (Pt), and one crucial element, selenium (Se). Authors aim to summarize the up-to-date knowledge of this topic.In this review, there are categorized and highlighted the most common patterns in the alterations of ferroptosis and pyroptosis by transition metals. Special attention is given to zinc since collected data support its dual nature of action in both ferroptosis and pyroptosis. All findings are presented together with a brief description of major biochemical pathways involving mentioned metals and are visualized in attached comprehensive figures.This work concludes that the majority of disruptions in the studied metals' homeostasis impacts cell fate, influencing both death and survival of cells in the complex system of altered pathways. Therefore, this summary opens up the space for further research.
细胞死亡是维持我们身体内稳态的最重要机制之一。铁死亡和焦亡是坏死样细胞死亡的形式。这些细胞死亡方式在癌症、心血管疾病、神经疾病和其他病理的病理生理学中起着关键作用。过渡金属是所有生物中含量丰富的一类元素。本文概述了铁死亡和焦亡途径及其与重要过渡金属的联系,这些过渡金属包括锌(Zn)、铜(Cu)、钼(Mo)、铅(Pb)、钴(Co)、铁(Fe)、镉(Cd)、镍(Ni)、汞(Hg)、铀(U)、铂(Pt),以及一种关键元素硒(Se)。作者旨在总结该主题的最新知识。在本综述中,对过渡金属引起的铁死亡和焦亡改变的最常见模式进行了分类和突出显示。由于收集到的数据支持锌在铁死亡和焦亡中的双重作用性质,因此对其给予了特别关注。所有研究结果均与涉及上述金属的主要生化途径的简要描述一起呈现,并在随附的综合图表中进行了可视化展示。这项工作得出的结论是,所研究金属的内稳态中的大多数破坏会影响细胞命运,在改变的途径的复杂系统中影响细胞的死亡和存活。因此,本综述为进一步研究开辟了空间。