|
|
Research progress on the basic pathway of ferroptosis and the possible regulatory mechanism of ferroptosis and osteoarthritis |
XU Limei XU Fangyuan XIA Jing LUO Fangfang LIN Munan#br# |
Department of Traditional Chinese Medicine, the 900th Hospital of the Joint Logistics Support Force of Chinese People’s Liberation Army, Fujian Province, Fuzhou 350002, China
|
|
|
Abstract Ferroptosis is a new type of iron-dependent programmed cell death. Iron, lipid, and amino acid metabolism are major pathways regulating ferroptosis. Osteoarthritis (OA) is a common degenerative joint disease. Its pathogenesis is complex and has not been completely clarified. However, iron metabolism disorder, oxidative stress, and lipid metabolism are common pathological characteristics of OA, which are closely related to the pathogenesis of OA. In this article, the basic mechanism of ferroptosis will be briefly described, and the role of ferroptosis in the pathogenesis of OA will be analyzed from the perspectives of iron metabolism disorder, amino acid metabolism and lipid metabolism, in order to provide a new direction for the clinical treatment of OA and new ideas for its prevention and treatment.
|
|
|
|
|
[1] Jiang X,Stockwell BR,Conrad M. Ferroptosis:mechanisms,biology and role in disease [J]. Nat Rev Mol Cell Biol,2021,22(4):266-282.
[2] He Y,Li Z,Alexander PG,et al. Pathogenesis of osteoarthritis:risk factors,regulatory pathways in chondrocytes,and experimental models [J]. Biology(Basel),2020,9(8):194-206.
[3] Primorac D,Molnar V,Rod E,et al. Knee osteoart pathogenesis and state-of-the-art non-operative therapeutic considerations [J]. Genes(Basel),2020,11(8):854-868.
[4] Han C,Liu Y,Dai R,et al. Ferroptosis and its potential role in human diseases [J]. Front Pharmacol,2020,11:239-259.
[5] Dixon SJ,Lemberg KM,Lamprecht MR,et al. Ferroptosis:an iron-dependent form of nonapoptotic cell death [J]. Cell,2012,149(5):1060-1072.
[6] Tang D,Chen X,Kang R,et al. Ferroptosis:molecular mechanisms and health implications [J]. Cell Res,2021,31(2):107-125.
[7] Luo Y,Chen H,Liu H,et al. Protective effects of ferroptosis inhibition on high fat diet-induced liver and renal injury in mice [J]. Int J Clin Exp Pathol,2020,13(8):2041-2049.
[8] Vogt AS,Arsiwala T,Mohsen M,et al. On iron metabolism and its regulation [J]. Int J Mol Sci,2021,22(9):4591-4612.
[9] Gao G,Li J,Zhang Y,et al. Cellular iron metabolism and regulation [J]. Adv Exp Med Biol,2019,1173:21-32.
[10] Ying JF,Lu ZB,Fu LQ,et al. The role of iron homeostasis and iron-mediated ROS in cancer [J]. Am J Cancer Res,2021,11(5):1895-1912.
[11] Xie J,He X,Fang H,et al. Identification of heme oxygenase-1 from golden pompano (Trachinotus ovatus) and response of Nrf2/HO-1 signaling pathway to copper-induced oxidative stress [J]. Chemosphere,2020,253:126654.
[12] Mou Y,Wang J,Wu J,et al. Ferroptosis,a new form of cell death:opportunities and challenges in cancer [J]. J Hematol Oncol,2019,12(1):34-57.
[13] Liang Z,Zhao W,Li X,et al. Cisplatin synergizes with PRLX93936 to induce ferroptosis in non-small cell lung cancer cells [J]. Biochem Biophys Res Commun,2021, 569:79-85.
[14] Liu M,Fan Y,Li D,et al. Ferroptosis inducer erastin sensitizes NSCLC cells to celastrol through activation of the ROS-mitochondrial fission-mitophagy axis [J]. Mol Oncol,2021,15(8):2084-2105.
[15] Ursini F,Maiorino M. Lipid peroxidation and ferroptosis:the role of GSH and GPx4 [J]. Free Radic Biol Med,2020,152:175-185.
[16] Seibt TM,Proneth B,Conrad M. Role of GPX4 in ferroptosis and its pharmacological implication [J]. Free Radic Biol Med,2019,133:144-152.
[17] Hassannia B,Vandenabeele P,Vanden BT. Targeting ferroptosis to iron out cancer [J]. Cancer Cell,2019,35(6):830-849.
[18] Das UN. Saturated fatty acids,MUFAs and PUFAs regulate ferroptosis [J]. Cell Chem Biol,2019,26(3):309-311.
[19] Zhang S,Xu J,Si H,et al. The role played by ferroptosis in osteoarthritis:evidence based on iron dyshomeostasis and lipid peroxidation [J]. Antioxidants (Basel),2022,11(9):1668-1685.
[20] Kennish L,Attur M,Oh C,et al. Age-dependent ferritin elevations and HFE C282Y mutation as risk factors for symptomatic knee osteoarthritis in males:a longitudinal cohort study [J]. BMC Musculoskelet Disord,2014,15:8.
[21] Wu L,Si H,Zeng Y,et al. Association between iron intake and progression of knee osteoarthritis [J]. Nutrients,2022, 14(8):1674-1689.
[22] Jing X,Lin J,Du T,et al. Iron overload is associated with accelerated progression of osteoarthritis:the role of DMT1 mediated iron homeostasis [J]. Front Cell Dev Biol,2020, 8:594509.
[23] Jing X,Du T,Li T,et al. The detrimental effect of iron on OA chondrocytes:importance of pro-inflammatory cytokines induced iron influx and oxidative stress [J]. J Cell Mol Med,2021,25(12):5671-5680.
[24] Li FJ,Long HZ,Zhou ZW,et al. System Xc-/GSH/GPX4 axis:an important antioxidant system for the ferroptosis in drug-resistant solid tumor therapy [J]. Front Pharmacol,2022,13:910292.
[25] Regan EA,Bowler RP,Crapo JD. Joint fluid antioxidants are decreased in osteoarthritic joints compared to joints with macroscopically intact cartilage and subacute injury [J]. Osteoarthritis Cartilage,2008,16(4):515-521.
[26] Miao Y,Chen Y,Xue F,et al. Contribution of ferroptosis and GPX4’s dual functions to osteoarthritis progression [J]. EBioMedicine,2022,76:103847.
[27] Han D,Fang Y,Tan X,et al. The emerging role of fibroblast-like synoviocytes-mediated synovitis in osteoarthritis:an update [J]. J Cell Mol Med,2020,24(17):9518-9532.
[28] Luo H,Zhang R. Icariin enhances cell survival in lipopolysaccharide-induced synoviocytes by suppressing ferroptosis via the Xc-/GPX4 axis [J]. Exp Ther Med,2021,21(1):72.
[29] Zhu S,Makosa D,Miller B,et al. Glutathione as a mediator of cartilage oxidative stress resistance and resilience during aging and osteoarthritis [J]. Connect Tissue Res,2020,61(1):34-47.
[30] Hu W,Chen Y,Dou C,et al. Microenvironment in subchondral bone:predominant regulator for the treatment of osteoarthritis [J]. Ann Rheum Dis,2021,80(4):413-422.
[31] Wan Y,Lv Y,Li L,et al. 15-Lipoxygenase-1 in osteoblasts promotes TGF-beta1 expression via inhibiting autophagy in human osteoarthritis [J]. Biomed Pharmacother,2020,121:109548.
[32] Habouri L,El MF,Ouhaddi Y,et al. Deletion of 12/15- lipoxygenase accelerates the development of aging-associated and instability-induced osteoarthritis [J]. Osteoarthritis Cartilage,2017,25(10):1719-1728. |
|
|
|