| Literature DB >> 35844870 |
Chunlu Yan1, Jinlong Zhang2, Fangyu An3, Jiayu Wang3, Yao Shi4, Lingqing Yuan4, Donghui Lv3, Yanzhen Zhao3, Yongfeng Wang4.
Abstract
Ferroptosis was induced the programmed cell death with iron overload Fenton reaction. Currently, ferroptosis has not been studied thoroughly. Existing studies have confirmed that ferroptosis involves the metabolisms of the Fe, lipids, amino acid, each mechanism is mutually independent but interrelated, and they are formed a complex regulatory network. Other evidence supports that ferroptosis is participated osteoporotic bone remodeling, predominantly affecting the interaction between bone formation and bone resorption, explicitly bone resorption exceeded bone formation. Based on previous studies, this review will summarize the regulatory network mechanism of ferroptosis on bone remodeling and reveal the role of ferroptosis in osteoporosis (OP).Entities:
Keywords: bone formation; bone resorption; ferroptosis; network regulation; osteoporosis
Mesh:
Year: 2022 PMID: 35844870 PMCID: PMC9280046 DOI: 10.3389/fpubh.2022.910675
Source DB: PubMed Journal: Front Public Health ISSN: 2296-2565
Figure 1Regulation of abnormal iron metabolism on ferroptosis. This figure summarizes the regulatory effect of Fe2+ and Fe3+ on ferroptosis. The black arrow represents the activation of the regulatory role of Fe2+ and Fe3+.
Figure 2Regulation of abnormal lipid metabolism on ferroptosis. This figure summarizes the regulatory effect of lipid metabolism on ferroptosis. The black arrow represents the activation of the regulatory role of lipid metabolism.
Figure 3Abnormal metabolism of amino acids and ferroptosis. This figure summarizes the regulatory effect of amino acids metabolism on ferroptosis. The black arrow represents the activating role of lipid metabolism. The red inhibition arrow represents the inhibiting role of lipid metabolism.
Figure 4Ferroptosis and bone formation. This figure summarizes the molecular mechanism of ferroptosis and the regulatory effect of ferroptosis on bone formation. The black arrow represents the activation of the regulatory role of ferroptosis. The red inhibition arrow represents the inhibition of the regulatory role of ferroptosis and medicine.