参考文献/References:
[1].Duggan JP,Peters AS,Trachiotis GD,et al. Epidemiology of oronary artery disease[J]. Surg Clin North Am,2022,102(3):499-516.
[2].申健,李梦豪,李幼奇,等. 磷酸二酯酶9A在心肌细胞缺血缺氧再灌注损伤的表达变化及意义[J]. 医学研究生学报,202235(3):250-256.
[3].Liu Y,Zhang J,Zhang D,et al. Research progress on the role of pyroptosis in myocardial ischemia-reperfusion injury[J]. Cells,2022,11(20):3271.
[4].Zhai Z,Zou P,Liu F,et al. Ferroptosis is a potential novel diagnostic and therapeutic target for patients with cardiomyopathy[J]. Front Cell Dev Biol,2021,9:649045.
[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].Mancias JD,Wang X,Gygi SP,et al. Quantitative proteomics identifies NCOA4 as the cargo receptor mediating ferritinophagy[J]. Nature,2014,509(7498):105-109.
[7].Qin Y,Qiao Y,Wang D,et al. Ferritinophagy and ferroptosis in cardiovascular disease:mechanisms and potential applications[J]. Biomed Pharmacother,2021,141:111872.
[8].Yin H,Xu L,Porter NA. Free radical lipid peroxidation:mechanisms and analysis[J]. Chem Rev,2011,111(10):5944-5972.
[9].Yang WS,SriRamaratnam R,Welsch ME,et al. Regulation of ferroptotic cancer cell death by GPX4[J]. Cell,2014,156(1-2):317-331.
[10].Dai C,Chen X,Li J,et al. Transcription factors in ferroptotic cell death[J]. Cancer Gene Ther,2020,27(9):645-656.
[11].Kawabata H. Transferrin and transferrin receptors update[J]. Free Radic Biol Med,2019,133:46-54.
[12].Reyhani A,McKenzie TG,Fu Q,et al. Fenton-chemistry-mediated radical polymerization[J]. Macromol Rapid Commun,2019,40(18):e1900220.
[13].Filipovic MR,Koppenol WH. The Haber-Weiss reaction—The latest revival[J]. Free Radic Biol Med,2019,145:221-222.
[14].Kagan VE,Mao G,Qu F,et al. Oxidized arachidonic and adrenic PEs navigate cells to ferroptosis[J]. Nat Chem Biol,2017,13(1):81-90.
[15].Anthonymuthu T,Tyurina Y,Sun W,et al. Resolving the paradox of ferroptotic cell death:ferrostatin-1 binds to 15LOX/PEBP1 complex,suppresses generation of peroxidized ETE-PE,and protects against ferroptosis[J]. Redox Biol,2021,38:101744.
[16].Sun W,Wu X,Yu P,et al. LncAABR07025387.1 enhances myocardial ischemia/reperfusion injury via miR-205/ACSL4-mediated ferroptosis[J]. Front Cell Dev Biol,2022,10:672391.
[17].Li W,Li W,Leng Y,et al. Ferroptosis is involved in diabetes myocardial ischemia/reperfusion injury through endoplasmic reticulum stress[J]. DNA Cell Biol,2020,39(2):210-225.
[18].李慧,杨林. Nrf2抗氧化的分子调控机制[J]. 生物信息学,2018,16(1):1-6.
[19].Bellezza I,Giambanco I,Minelli A,et al. Nrf2-Keap1 signaling in oxidative and reductive stress[J]. Biochim Biophys Acta Mol Cell Res,20181865(5):721-733.
[20].Stockwell BR,Friedmann Angeli JP,Bayir H,et al. Ferroptosis:a regulated cell death nexus linking metabolism,redox biology,and disease[J]. Cell,2017,171(2):273-285.
[21].Dong H,Qiang Z,Chai D,et al. Nrf2 inhibits ferroptosis and protects against acute lung injury due to intestinal ischemia reperfusion via regulating SLC7A11 and HO-1[J]. Aging (Albany NY),2020,12(13):12943-12959.
[22].Jakobs P,Serbulea V,Leitinger N,et al. Nuclear factor(erythroid-derived 2)-like 2 and thioredoxin-1 in atherosclerosis and ischemia/reperfusion injury in the heart[J]. Antioxid Redox Signal,2017,26(12):630-644.
[23].Xu G,Zhao X,Fu J,et al. Resveratrol increase myocardial Nrf2 expression in type 2 diabetic rats and alleviate myocardial ischemia/reperfusion injury (MIRI)[J]. Ann Palliat Med,2019,8(5):565-575.
[24].Zhang Q,Liu J,Duan H,et al. Activation of Nrf2/HO-1 signaling:an important molecular mechanism of herbal medicine in the treatment of atherosclerosis via the protection of vascular endothelial cells from oxidative stress[J]. J Adv Res,2021,34:43-63.
[25].Wang Z,Yao M,Jiang L,et al. Dexmedetomidine attenuates myocardial ischemia/reperfusion-induced ferroptosis via AMPK/GSK-3β/Nrf2 axis[J]. Biomed Pharmacother,2022,154:113572.
[26].Jeong MH,Jeong HJ,Ahn BY,et al. Correction:PRMT1 suppresses ATF4-mediated endoplasmic reticulum response in cardiomyocytes[J]. Cell Death Dis,2020,11(3):203.
[27].Chen D,Fan Z,Rauh M,et al. ATF4 promotes angiogenesis and neuronal cell death and confers ferroptosis in a xCT-dependent manner[J]. Oncogene,2017,36(40):5593-5608.
[28].Shi B,Ma M,Zheng Y,et al. mTOR and beclin1:two key autophagy-related molecules and their roles in myocardial ischemia/reperfusion injury[J]. J Cell Physiol,2019,234(8):12562-12568.
[29].Huang C,Chen L,Chen G,et al. SHP-1/STAT3-signaling-axis-regulated coupling between BECN1 and SLC7A11 contributes to sorafenib-induced ferroptosis in hepatocellular carcinoma[J]. Int J Mol Sci,2022,23(19):11092.
[30].Yin Z,Ding G,Chen X,et al. Beclin1 haploinsufficiency rescues low ambient temperature-induced cardiac remodeling and contractile dysfunction through inhibition of ferroptosis and mitochondrial injury[J]. Metabolism,2020,113:154397.
[31].Ibanez B,James S,Agewall S,et al. 2017 ESC Guidelines for the management of acute myocardial infarction in patients presenting with ST-segment elevation:The Task Force for the management of acute myocardial infarction in patients presenting with ST-segment elevation of the European Society of Cardiology(ESC)[J]. Eur Heart J,2018,39(2):119-177.
[32].Chen Y,Guo Z,Peng X,et al. Nimodipine represses AMPK phosphorylation and excessive autophagy after chronic cerebral hypoperfusion in rats[J]. Brain Res Bull,2018,140:88-96.
[33].Fan W,Zhang B,Wu C,et al. Plantago asiatica L. seeds extract protects against cardiomyocyte injury in isoproterenol-induced cardiac hypertrophy by inhibiting excessive autophagy and apoptosis in mice[J]. Phytomedicine,2021,91:153681.
[34].Ning D,Yang X,Wang T,et al. Atorvastatin treatment ameliorates cardiac function and remodeling induced by isoproterenol attack through mitigation of ferroptosis[J]. Biochem Biophys Res Commun,2021,574:39-47.
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