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Metal ions overloading and cell death

Yun Lai, Fen fen Gao, Ruo ting Ge, Rui Liu, Shumei Ma, Xiaodong Liu

2024Cell Biology and Toxicology71 citationsDOIOpen Access PDF

Abstract

Cell death maintains cell morphology and homeostasis during development by removing damaged or obsolete cells. The concentration of metal ions whithin cells is regulated by various intracellular transporters and repositories to maintain dynamic balance. External or internal stimuli might increase the concentration of metal ions, which results in ions overloading. Abnormal accumulation of large amounts of metal ions can lead to disruption of various signaling in the cell, which in turn can produce toxic effects and lead to the occurrence of different types of cell deaths. In order to further study the occurrence and development of metal ions overloading induced cell death, this paper reviewed the regulation of Ca2+, Fe3+, Cu2+ and Zn2+ metal ions, and the internal mechanism of cell death induced by overloading. Furthermore, we found that different metal ions possess a synergistic and competitive relationship in the regulation of cell death. And the enhanced level of oxidative stress was present in all the processes of cell death due to metal ions overloading, which possibly due to the combination of factors. Therefore, this review offers a theoretical foundation for the investigation of the toxic effects of metal ions, and presents innovative insights for targeted regulation and therapeutic intervention. • Metal ions overloading disrupts homeostasis, which in turn affects the regulation of cell death. • Metal ions overloading can cause cell death via reactive oxygen species (ROS). • Different metal ions have synergistic and competitive relationships for regulating cell death.

Topics & Concepts

IntracellularProgrammed cell deathMetal ions in aqueous solutionHomeostasisCellTransporterMetalChemistryCell biologyIonBiophysicsBiologyBiochemistryApoptosisGeneOrganic chemistryTrace Elements in HealthHeavy Metal Exposure and ToxicityNanoparticles: synthesis and applications
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