Exosomes secreted from cardiomyocytes suppress the sensitivity of tumor ferroptosis in ischemic heart failure
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Y. Liu | Baofeng Yang | Xiaochen Pang | Ying-ju Liu | Weijie Du | Qian Liu | Ye Yuan | Xin Li | Ying Liu | Shuting Yu | Guanghui Li | Zijing Ren | Zhong-hua Wang | Zhezhe Qu | Kuiwu Liu | Zhongting Mei | Chang-hong Wang | Zhihua Shen | Jiaying Pu | Tong Wang | Ao Wang | Yanquan Wang | Jiajie Xie | Guanghui Li | Yingqi Liu | Zhiyong Sun | Jinhuan Hong | Jinhuan Hong | Ao Wang | Ying Liu
[1] N. Hempel,et al. Mitochondrial calcium uniporter drives metastasis and confers a targetable cystine dependency in pancreatic cancer. , 2022, Cancer research.
[2] Q. Zhong,et al. Ubiquitin ligase E3 HUWE1/MULE targets transferrin receptor for degradation and suppresses ferroptosis in acute liver injury , 2022, Cell Death & Differentiation.
[3] Cheng Lu,et al. Ferroptosis: A New Strategy for Cancer Therapy , 2022, Frontiers in Oncology.
[4] R. Guo,et al. Ferroptosis in cancer therapy: a novel approach to reversing drug resistance , 2022, Molecular Cancer.
[5] Xinjiang Wang,et al. Small Molecule MMRi62 Induces Ferroptosis and Inhibits Metastasis in Pancreatic Cancer via Degradation of Ferritin Heavy Chain and Mutant p53. , 2022, Molecular cancer therapeutics.
[6] Yajing Wang,et al. Ischemic Heart-Derived Small Extracellular Vesicles Impair Adipocyte Function , 2021, Circulation research.
[7] B. Jiang,et al. KLF2 inhibits cancer cell migration and invasion by regulating ferroptosis through GPX4 in clear cell renal cell carcinoma. , 2021, Cancer letters.
[8] Baofeng Yang,et al. CircHelz activates NLRP3 inflammasome to promote myocardial injury by sponging miR-133a-3p in mouse ischemic heart. , 2021, Journal of molecular and cellular cardiology.
[9] Zhixiang Wang,et al. Endogenous glutamate determines ferroptosis sensitivity via ADCY10-dependent YAP suppression in lung adenocarcinoma , 2021, Theranostics.
[10] X. Zhi,et al. Tumor cell-secreted exosomal miR-22-3p inhibits transgelin and induces vascular abnormalization to promote tumor budding. , 2021, Molecular therapy : the journal of the American Society of Gene Therapy.
[11] Lei Yang,et al. ALKBH5 suppresses tumor progression via an m6A-dependent epigenetic silencing of pre-miR-181b-1/YAP signaling axis in osteosarcoma , 2021, Cell death & disease.
[12] Y. Huh,et al. Polyunsaturated fatty acid biosynthesis pathway determines ferroptosis sensitivity in gastric cancer. , 2020, Proceedings of the National Academy of Sciences of the United States of America.
[13] G. Kroemer,et al. Ferroptosis: molecular mechanisms and health implications , 2020, Cell Research.
[14] Mingan Yang,et al. Inhibition of ACSL4 attenuates ferroptotic damage after pulmonary ischemia‐reperfusion , 2020, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[15] D. Tang,et al. Iron Metabolism in Ferroptosis , 2020, Frontiers in Cell and Developmental Biology.
[16] M. Conrad,et al. Targeting Ferroptosis: New Hope for As-Yet-Incurable Diseases. , 2020, Trends in molecular medicine.
[17] D. Klionsky,et al. Ferroptosis: machinery and regulation , 2020, Autophagy.
[18] K. Moore,et al. Myocardial infarction accelerates breast cancer via innate immune reprogramming , 2020, Nature Medicine.
[19] Yongping Wang,et al. Extracellular vesicle-encapsulated miR-22-3p from bone marrow mesenchymal stem cell promotes osteogenic differentiation via FTO inhibition , 2020, Stem Cell Research & Therapy.
[20] R. Shofti,et al. Early Cardiac Remodeling Promotes Tumor Growth and Metastasis , 2020, Circulation.
[21] Y. Ba,et al. CAF secreted miR-522 suppresses ferroptosis and promotes acquired chemo-resistance in gastric cancer , 2020, Molecular Cancer.
[22] Raghu Kalluri,et al. The biology, function, and biomedical applications of exosomes , 2020, Science.
[23] C. Kahn,et al. Extracellular miRNAs: From Biomarkers to Mediators of Physiology and Disease. , 2019, Cell metabolism.
[24] Lili Zhang,et al. Exosomes from nicotine-stimulated macrophages accelerate atherosclerosis through miR-21-3p/PTEN-mediated VSMC migration and proliferation , 2019, Theranostics.
[25] R. D. de Boer,et al. Cancer and heart disease: associations and relations , 2019, European journal of heart failure.
[26] D. Krysko,et al. Ferroptosis at the crossroads of cancer-acquired drug resistance and immune evasion , 2019, Nature Reviews Cancer.
[27] Junnan Tang,et al. microRNA-21-5p dysregulation in exosomes derived from heart failure patients impairs regenerative potential. , 2019, The Journal of clinical investigation.
[28] Dihua Yu,et al. Exosomes in cancer development, metastasis, and immunity. , 2019, Biochimica et biophysica acta. Reviews on cancer.
[29] B. Li,et al. Ferroptosis, a new form of cell death: opportunities and challenges in cancer , 2019, Journal of Hematology & Oncology.
[30] R. D. de Boer,et al. Common risk factors for heart failure and cancer , 2019, Cardiovascular research.
[31] Monique A J van Eijndhoven,et al. Exosomes , 2010, Annual review of biochemistry.
[32] C. Maack,et al. Linking Heart Failure to Cancer: Background Evidence and Research Perspectives , 2018, Circulation.
[33] Lyanne M. Kieneker,et al. Heart Failure Stimulates Tumor Growth by Circulating Factors , 2018, Circulation.
[34] Wei Zhao,et al. MiR-22-3p Regulates Cell Proliferation and Inhibits Cell Apoptosis through Targeting the eIF4EBP3 Gene in Human Cervical Squamous Carcinoma Cells , 2018, International journal of medical sciences.
[35] Chuanjiang He,et al. Exosome Theranostics: Biology and Translational Medicine , 2018, Theranostics.
[36] D. Sabatini,et al. NFS1 undergoes positive selection in lung tumours and protects cells from ferroptosis , 2017, Nature.
[37] B. Stockwell,et al. Ferroptosis: A Regulated Cell Death Nexus Linking Metabolism, Redox Biology, and Disease , 2017, Cell.
[38] A. Walch,et al. ACSL4 dictates ferroptosis sensitivity by shaping cellular lipid composition. , 2017, Nature chemical biology.
[39] R. Foo,et al. A Simplified, Langendorff-Free Method for Concomitant Isolation of Viable Cardiac Myocytes and Nonmyocytes From the Adult Mouse Heart. , 2016, Circulation research.
[40] L. Køber,et al. Incidence of cancer in patients with chronic heart failure: a long‐term follow‐up study , 2016, European journal of heart failure.
[41] J. Cerhan,et al. Heart Failure After Myocardial Infarction Is Associated With Increased Risk of Cancer. , 2014, Journal of the American College of Cardiology.
[42] Douglas Losordo,et al. Exosomes and cardiac repair after myocardial infarction. , 2014, Circulation research.
[43] Matthew E. Welsch,et al. Regulation of Ferroptotic Cancer Cell Death by GPX4 , 2014, Cell.
[44] Timothy J Nelson,et al. Patients with heart failure have an increased risk of incident cancer. , 2013, Journal of the American College of Cardiology.
[45] R. Setterquist,et al. Exosomes: current knowledge of their composition, biological functions, and diagnostic and therapeutic potentials. , 2012, Biochimica et biophysica acta.
[46] Zhiguo Wang,et al. The principles of MiRNA-masking antisense oligonucleotides technology. , 2011, Methods in molecular biology.
[47] E. Lund,et al. Substrate selectivity of exportin 5 and Dicer in the biogenesis of microRNAs. , 2006, Cold Spring Harbor symposia on quantitative biology.
[48] M. Cascante,et al. Use of Metabolic Control Analysis to Design a New Strategy for Cancer Therapy , 2000 .