Potential markers and metabolic processes involved in the mechanism of radiation-induced heart injury.
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P. Babál | P. Singal | M. Barančík | A. Lazou | M. Ferko | N. Tribulova | R. Kukreja | N. Vrbjar | C. Viczenczová | B. Kura | B. Szeiffova Bacova | J. Slezak | T. Ravingerová | L. Okruhlicová | K. Frimmel | L. Mézešová | B. Kaločayová | J. Slezák | M. Barančı́k
[1] P. Babál,et al. Implication of microRNAs in the development and potential treatment of radiation-induced heart disease. , 2017, Canadian journal of physiology and pharmacology.
[2] T. Ravingerová,et al. Preventive and therapeutic application of molecular hydrogen in situations with excessive production of free radicals. , 2016, Physiological research.
[3] R. Kukreja,et al. Changes of microRNA-1, -15b and -21 levels in irradiated rat hearts after treatment with potentially radioprotective drugs. , 2016, Physiological research.
[4] P. Weismann,et al. Myocardial connexin-43 and PKC signalling are involved in adaptation of the heart to irradiation-induced injury: Implication of miR-1 and miR-21. , 2016, General physiology and biophysics.
[5] A. Lazou,et al. Role of Pleiotropic Properties of Peroxisome Proliferator-Activated Receptors in the Heart: Focus on the Nonmetabolic Effects in Cardiac Protection. , 2016, Cardiovascular therapeutics.
[6] M. Barančík,et al. Mechanisms of cardiac radiation injury and potential preventive approaches. , 2015, Canadian journal of physiology and pharmacology.
[7] Antonio Ayala,et al. Lipid Peroxidation: Production, Metabolism, and Signaling Mechanisms of Malondialdehyde and 4-Hydroxy-2-Nonenal , 2014, Oxidative medicine and cellular longevity.
[8] P. Babál,et al. Effects of γ-irradiation on Na,K-ATPase in cardiac sarcolemma , 2014, Molecular and Cellular Biochemistry.
[9] F. Stewart,et al. Understanding radiation-induced cardiovascular damage and strategies for intervention. , 2013, Clinical oncology (Royal College of Radiologists (Great Britain)).
[10] J. Mariani,et al. Cardiac complications of thoracic irradiation. , 2013, Journal of the American College of Cardiology.
[11] F. Stewart,et al. Local heart irradiation of ApoE(-/-) mice induces microvascular and endocardial damage and accelerates coronary atherosclerosis. , 2012, Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology.
[12] I. Waczulíková,et al. Dual influence of spontaneous hypertension on membrane properties and ATP production in heart and kidney mitochondria in rat: effect of captopril and nifedipine, adaptation and dysadaptation. , 2012, Canadian journal of physiology and pharmacology.
[13] A. Siomek. NF-κB signaling pathway and free radical impact. , 2012, Acta biochimica Polonica.
[14] A. Lazou,et al. PPAR-alpha activation as a preconditioning-like intervention in rats in vivo confers myocardial protection against acute ischaemia-reperfusion injury: involvement of PI3K-Akt. , 2012, Canadian journal of physiology and pharmacology.
[15] S. Samuel,et al. The endothelium: influencing vascular smooth muscle in many ways. , 2012, Canadian journal of physiology and pharmacology.
[16] M. Giera,et al. Recent Advancements in the LC- and GC-Based Analysis of Malondialdehyde (MDA): A Brief Overview , 2012, Chromatographia.
[17] M. Barančík,et al. Chronic cardiotoxicity of doxorubicin involves activation of myocardial and circulating matrix metalloproteinases in rats , 2012, Acta Pharmacologica Sinica.
[18] J. Hopewell,et al. Radiation as a risk factor for cardiovascular disease. , 2011, Antioxidants & redox signaling.
[19] B. Chauvet,et al. [Radiation-related heart toxicity]. , 2011, Cancer radiotherapie : journal de la Societe francaise de radiotherapie oncologique.
[20] D. Atar,et al. Early measurements of plasma matrix metalloproteinase-2 predict infarct size and ventricular dysfunction in ST-elevation myocardial infarction , 2011, Heart.
[21] D. Mann,et al. Role of MicroRNAs in Cardiac Remodeling and Heart Failure , 2011, Cardiovascular Drugs and Therapy.
[22] S. Yusuf,et al. Radiation-Induced Heart Disease: A Clinical Update , 2011, Cardiology research and practice.
[23] F. Stewart,et al. Vascular Damage as an Underlying Mechanism of Cardiac and Cerebral Toxicity in Irradiated Cancer Patients , 2010, Radiation research.
[24] H. Hecker,et al. Effects of Radiation Therapy on Myocardial Cell Integrity and Pump Function: Which Role for Cardiac Biomarkers? , 2010, Chemotherapy.
[25] D. Bates. Vascular endothelial growth factors and vascular permeability , 2010, Cardiovascular research.
[26] N. Weintraub,et al. Understanding radiation-induced vascular disease. , 2010, Journal of the American College of Cardiology.
[27] T. Soukup,et al. Thyroid hormones and cardiac arrhythmias. , 2010, Vascular pharmacology.
[28] S. Darby,et al. Radiation-related heart disease: current knowledge and future prospects. , 2010, International journal of radiation oncology, biology, physics.
[29] J. Hopewell,et al. 10 Gy total body irradiation increases risk of coronary sclerosis, degeneration of heart structure and function in a rat model , 2009, International journal of radiation biology.
[30] Yueqin Kong,et al. Oxidative stress as a mediator of cardiovascular disease , 2009, Oxidative medicine and cellular longevity.
[31] H. Rodemann,et al. Molecular and cellular basis of radiation fibrosis. , 2009, International journal of radiation biology.
[32] Wei Yu. Response of Cells to Ionizing Radiation , 2009 .
[33] Tongcun Zhang,et al. Role of microRNAs in cardiac hypertrophy and heart failure , 2009, IUBMB life.
[34] M. Latronico,et al. MicroRNAs and cardiac pathology , 2009, Nature Reviews Cardiology.
[35] E. Jacobs,et al. Vascular injury after whole thoracic x-ray irradiation in the rat. , 2009, International journal of radiation oncology, biology, physics.
[36] A. Armugam,et al. MicroRNAs: biogenesis, function and applications. , 2009, Current opinion in molecular therapeutics.
[37] Qizhi Yao,et al. MicroRNAs: Control and Loss of Control in Human Physiology and Disease , 2009, World Journal of Surgery.
[38] C. Jung,et al. PPAR-alpha activation protects the type 2 diabetic myocardium against ischemia-reperfusion injury: involvement of the PI3-Kinase/Akt and NO pathway. , 2009, American journal of physiology. Heart and circulatory physiology.
[39] F. Stewart,et al. Radiation-Induced Activation of TGF-β Signaling Pathways in Relation to Vascular Damage in Mouse Kidneys , 2009, Radiation research.
[40] N. Choi,et al. Cardiac blood biomarkers in patients receiving thoracic (chemo)radiation. , 2008, Lung cancer.
[41] E. Abu-Dief,et al. Melatonin and roentgen irradiation‐induced acute radiation enteritis in Albino rats: An animal model , 2008, Cell biology international.
[42] H. Tsutsui,et al. Mitochondrial oxidative stress and dysfunction in myocardial remodelling. , 2008, Cardiovascular research.
[43] C. Boni,et al. An oxidative stress score as a combined measure of the pro-oxidant and anti-oxidant counterparts in patients with coronary artery disease. , 2008, Clinical biochemistry.
[44] C. Toaldo,et al. The Role of PPAR Ligands in Controlling Growth-Related Gene Expression and their Interaction with Lipoperoxidation Products , 2008, PPAR research.
[45] C. Szabó,et al. Role of the peroxynitrite-poly(ADP-ribose) polymerase pathway in human disease. , 2008, The American journal of pathology.
[46] O. Moreira,et al. Effects of γ-irradiation on the membrane ATPases of human erythrocytes from transfusional blood concentrates , 2008, Annals of Hematology.
[47] F. Stewart,et al. Radiation-induced cardiovascular injury , 2008, Radiation and environmental biophysics.
[48] A. Nègre-Salvayre,et al. Advanced lipid peroxidation end products in oxidative damage to proteins. Potential role in diseases and therapeutic prospects for the inhibitors , 2008, British journal of pharmacology.
[49] G. J. van der Vusse,et al. Peroxisome proliferator‐activated receptors and inflammation: take it to heart , 2007, Acta physiologica.
[50] Weiling Zhao,et al. Oxidative damage pathways in relation to normal tissue injury. , 2007, The British journal of radiology.
[51] M. Hirano,et al. Distinct Ca2+ Requirement for NO Production between Proteinase-Activated Receptor 1 and 4 (PAR1 and PAR4) in Vascular Endothelial Cells , 2007, Journal of Pharmacology and Experimental Therapeutics.
[52] Yuan Zhang,et al. Atherogenic Lipids Induce Adhesion of Human Coronary Artery Smooth Muscle Cells to Macrophages by Up-regulating Chemokine CX3CL1 on Smooth Muscle Cells in a TNFα-NFκB-dependent Manner* , 2007, Journal of Biological Chemistry.
[53] M. Olszewski,et al. TNF Trafficking to Human Mast Cell Granules: Mature Chain-Dependent Endocytosis1 , 2007, The Journal of Immunology.
[54] T. Ravingerová,et al. Differential role of PI3K/Akt pathway in the infarct size limitation and antiarrhythmic protection in the rat heart , 2007, Molecular and Cellular Biochemistry.
[55] K. Naseem,et al. Nitric oxide in blood , 2007 .
[56] I. Waczulíková,et al. Functional remodeling of heart mitochondria in acute diabetes: interrelationships between damage, endogenous protection and adaptation. , 2006, General physiology and biophysics.
[57] W. Zareba,et al. Heavy ion radiation up-regulates Cx43 and ameliorates arrhythmogenic substrates in hearts after myocardial infarction. , 2006, Cardiovascular research.
[58] Leslie L. Clark,et al. Specific Temporal Profile of Matrix Metalloproteinase Release Occurs in Patients After Myocardial Infarction: Relation to Left Ventricular Remodeling , 2006, Circulation.
[59] K. Sunagawa,et al. Blockade of NF-κB improves cardiac function and survival after myocardial infarction , 2006 .
[60] N. Türközkan,et al. Role of free radicals on mechanism of radiation nephropathy , 2006, Molecular and Cellular Biochemistry.
[61] E. Schiffrin,et al. Peroxisome proliferator-activated receptors in vascular biology-molecular mechanisms and clinical implications. , 2006, Vascular pharmacology.
[62] M. Elahi,et al. Free radicals in blood: evolving concepts in the mechanism of ischemic heart disease. , 2006, Archives of biochemistry and biophysics.
[63] M. Valko,et al. Free radicals, metals and antioxidants in oxidative stress-induced cancer. , 2006, Chemico-biological interactions.
[64] K. Manton,et al. THE RISK OF RADIATION-INDUCED CEREBROVASCULAR DISEASE IN CHERNOBYL EMERGENCY WORKERS , 2006, Health physics.
[65] M. Gold,et al. Selective induction of matrix metalloproteinases and tissue inhibitor of metalloproteinases in atrial and ventricular myocardium in patients with atrial fibrillation. , 2006, The American journal of cardiology.
[66] J. S. Janicki,et al. Cardiac mast cell regulation of matrix metalloproteinase-related ventricular remodeling in chronic pressure or volume overload. , 2006, Cardiovascular research.
[67] S. Hancock,et al. Screening for coronary artery disease after mediastinal irradiation for Hodgkin's disease. , 2006, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[68] Stefan Dhein,et al. Pharmacology of gap junctions. New pharmacological targets for treatment of arrhythmia, seizure and cancer? , 2005, Biochimica et biophysica acta.
[69] D. Kopelman,et al. Radiation Induces Endothelial Dysfunction in Murine Intestinal Arterioles via Enhanced Production of Reactive Oxygen Species , 2005, Arteriosclerosis, thrombosis, and vascular biology.
[70] R. Peto,et al. Long-term mortality from heart disease and lung cancer after radiotherapy for early breast cancer: prospective cohort study of about 300,000 women in US SEER cancer registries. , 2005, The Lancet. Oncology.
[71] M. Cronin,et al. Metals, toxicity and oxidative stress. , 2005, Current medicinal chemistry.
[72] D. Lau,et al. Adipokines: molecular links between obesity and atheroslcerosis. , 2005, American journal of physiology. Heart and circulatory physiology.
[73] A. Takahashi,et al. Radiation-induced adaptive responses and bystander effects. , 2004, Uchu Seibutsu Kagaku.
[74] J. Wedemeyer,et al. Mast cells promote homeostasis by limiting endothelin-1-induced toxicity , 2004, Nature.
[75] J. Wondergem,et al. Histopathology of ventricles, coronary arteries and mast cell accumulation in transverse and longitudinal sections of the rat heart after irradiation. , 2004, Oncology reports.
[76] Leong L Ng,et al. Plasma MMP-9 and MMP-2 following acute myocardial infarction in man: correlation with echocardiographic and neurohumoral parameters of left ventricular dysfunction. , 2004, Journal of cardiac failure.
[77] Chao-shu Tang,et al. Cobalt-60 gamma radiation increased the nitric oxide generation in cultured rat vascular smooth muscle cells. , 2004, Life sciences.
[78] N. Severs,et al. Remodelling of gap junctions and connexin expression in heart disease. , 2004, Biochimica et biophysica acta.
[79] J. Wondergem,et al. Increased Deposition of von Willebrand Factor in the Rat Heart after Local Ionizing Irradiation , 2004, Strahlentherapie und Onkologie.
[80] M. O’Banion,et al. Radiation-Induced Edema is Dependent on Cyclooxygenase 2 Activity in Mouse Brain , 2004, Radiation research.
[81] D. Wink,et al. The chemistry of nitrosative stress induced by nitric oxide and reactive nitrogen oxide species. Putting perspective on stressful biological situations , 2004, Biological chemistry.
[82] J. Moulder. Post‐irradiation approaches to treatment of radiation injuries in the context of radiological terrorism and radiation accidents: a review , 2004, International journal of radiation biology.
[83] J. Little,et al. Low dose ionizing radiation‐induced activation of connexin 43 expression , 2003, International journal of radiation biology.
[84] C. Visser,et al. C-reactive protein activates complement in infarcted human myocardium. , 2003, The American journal of pathology.
[85] Mark B Pepys,et al. C-reactive protein: a critical update. , 2003, The Journal of clinical investigation.
[86] W. Tatton,et al. Neuroprotection by deprenyl and other propargylamines: glyceraldehyde-3-phosphate dehydrogenase rather than monoamine oxidase B , 2003, Journal of Neural Transmission.
[87] R. Schmidt-Ullrich,et al. Stress and Radiation-Induced Activation of Multiple Intracellular Signaling Pathways1 , 2003, Radiation research.
[88] Paul McLoughlin,et al. The structural basis of pulmonary hypertension in chronic lung disease: remodelling, rarefaction or angiogenesis? , 2002, Journal of anatomy.
[89] C. Easterly,et al. Pathophysiological effects of radiation on atherosclerosis development and progression, and the incidence of cardiovascular complications. , 2002, Medical physics.
[90] J. Dyck,et al. Intracellular Action of Matrix Metalloproteinase-2 Accounts for Acute Myocardial Ischemia and Reperfusion Injury , 2002, Circulation.
[91] Jacqueline P. Williams,et al. Cyclooxygenase-2 modulates brain inflammation-related gene expression in central nervous system radiation injury. , 2002, Brain research. Molecular brain research.
[92] S. Underwood,et al. Detection of defects in myocardial perfusion imaging in patients with early breast cancer treated with radiotherapy. , 2002, Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology.
[93] L. Fink,et al. Deficiency of microvascular thrombomodulin and up-regulation of protease-activated receptor-1 in irradiated rat intestine: possible link between endothelial dysfunction and chronic radiation fibrosis. , 2002, The American journal of pathology.
[94] E. Poehlman,et al. Weight Loss Reduces C-Reactive Protein Levels in Obese Postmenopausal Women , 2002, Circulation.
[95] P. Razeghi,et al. Hypoxia in vivo decreases peroxisome proliferator-activated receptor alpha-regulated gene expression in rat heart. , 2001, Biochemical and biophysical research communications.
[96] F. Stewart,et al. Radiation-induced glomerular thrombus formation and nephropathy are not prevented by the ADP receptor antagonist clopidogrel. , 2001, International journal of radiation oncology, biology, physics.
[97] Zvi Fuks,et al. Endothelial Apoptosis as the Primary Lesion Initiating Intestinal Radiation Damage in Mice , 2001, Science.
[98] I. Lax,et al. Partial irradiation of the heart. , 2001, Seminars in radiation oncology.
[99] J. Loscalzo,et al. Nitric Oxide Insufficiency, Platelet Activation, and Arterial Thrombosis , 2001 .
[100] J. Wondergem,et al. Structural changes in the auricles of the rat heart after local ionizing irradiation. , 2001, Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology.
[101] J. Little,et al. Direct evidence for the participation of gap junction-mediated intercellular communication in the transmission of damage signals from alpha -particle irradiated to nonirradiated cells. , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[102] A. Harris,et al. Thymidine phosphorylase induces carcinoma cell oxidative stress and promotes secretion of angiogenic factors. , 2000, Cancer research.
[103] H. Bundgaard,et al. Na,K-ATPase in the myocardium: molecular principles, functional and clinical aspects. , 2000, General physiology and biophysics.
[104] B. Halliwell,et al. Free Radicals and Antioxidants in the Year 2000: A Historical Look to the Future , 2000, Annals of the New York Academy of Sciences.
[105] C. Squiban,et al. Differential regulation by IL-4 and IL-10 of radiation-induced IL-6 and IL-8 production and ICAM-1 expression by human endothelial cells. , 1999, Cytokine.
[106] A. Ziegelhöffer,et al. Free oxygen radicals contribute to high incidence of reperfusion-induced arrhythmias in isolated rat heart. , 1999, Life sciences.
[107] S. Wood,et al. The physiological structure of human C-reactive protein and its complex with phosphocholine. , 1999, Structure.
[108] F. Lebrun,et al. Ionizing radiation stimulates muscarinic regulation of rat intestinal mucosal function. , 1998, American journal of physiology. Gastrointestinal and liver physiology.
[109] F. Stewart,et al. Increased expression of glomerular von Willebrand factor after irradiation of the mouse kidney. , 1998, Radiation research.
[110] J. Little,et al. Intercellular communication is involved in the bystander regulation of gene expression in human cells exposed to very low fluences of alpha particles. , 1998, Radiation research.
[111] P. Libby,et al. CD40 signaling in vascular cells: a key role in atherosclerosis? , 1998, Atherosclerosis.
[112] S. Bryant,et al. Activation of the NF-kappa B and I kappa B system in smooth muscle cells after rat arterial injury. Induction of vascular cell adhesion molecule-1 and monocyte chemoattractant protein-1. , 1997, The American journal of pathology.
[113] V. Bennett,et al. Synthesis and secretion of von Willebrand factor and fibronectin in megakaryocytes at different phases of maturation. , 1997, Arteriosclerosis, thrombosis, and vascular biology.
[114] P. Baeuerle,et al. Role of nuclear factor‐kappa B in atherogenesis , 1997, Experimental physiology.
[115] C. Visser,et al. C-reactive protein colocalizes with complement in human hearts during acute myocardial infarction. , 1997, Circulation.
[116] D. Harrison,et al. Reactive oxygen species produced by macrophage-derived foam cells regulate the activity of vascular matrix metalloproteinases in vitro. Implications for atherosclerotic plaque stability. , 1996, The Journal of clinical investigation.
[117] J. Greenberger,et al. Ionizing irradiation increases transcription of the von Willebrand factor gene in endothelial cells. , 1996, Blood.
[118] L. Rutqvist,et al. Myocardial damage in breast cancer patients treated with adjuvant radiotherapy: a prospective study. , 1996, International journal of radiation oncology, biology, physics.
[119] C. Mueller-Dieckmann,et al. Tyrosine Phosphorylation of IκB-α Activates NF-κB without Proteolytic Degradation of IκB-α , 1996, Cell.
[120] Lawrence Da. Transforming growth factor-beta: a general review. , 1996, European cytokine network.
[121] A. R. Marchese,et al. Changes in the proportion of types I and III collagen in the left ventricular wall of patients with post-irradiative pericarditis. , 1996, Cardiovascular surgery.
[122] D. Hallahan,et al. E-selectin gene induction by ionizing radiation is independent of cytokine induction. , 1995, Biochemical and biophysical research communications.
[123] H. Withers,et al. Induction of acute phase gene expression by brain irradiation. , 1995, International journal of radiation oncology, biology, physics.
[124] J. Harris,et al. Serum cardiac troponin T levels during treatment of early-stage breast cancer. , 1995, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[125] P. Libby,et al. Induction and Stabilization of IκBα by Nitric Oxide Mediates Inhibition of NF-κB (*) , 1995, The Journal of Biological Chemistry.
[126] S. Schultz-Hector,et al. Radiation-induced loss of endothelial alkaline phosphatase activity and development of myocardial degeneration. An ultrastructural study. , 1994, Laboratory investigation; a journal of technical methods and pathology.
[127] P. Kubes,et al. Intracellular oxidative stress induced by nitric oxide synthesis inhibition increases endothelial cell adhesion to neutrophils. , 1994, Circulation research.
[128] R. Gupta,et al. Nuclear magnetic resonance measurement of intracellular sodium in the perfused normotensive and spontaneously hypertensive rat heart. , 1994, American journal of hypertension.
[129] M. Verheij,et al. Ionizing radiation enhances platelet adhesion to the extracellular matrix of human endothelial cells by an increase in the release of von Willebrand factor. , 1994, Radiation research.
[130] Y. Ikehara,et al. Cellular localization of endothelial alkaline phosphatase reaction product and enzyme protein in the myocardium. , 1993, The journal of histochemistry and cytochemistry : official journal of the Histochemistry Society.
[131] C. Ruan,et al. Thrombomodulin as a marker of radiation-induced endothelial cell injury. , 1992, Radiation research.
[132] M. Böhm,et al. Radiation-induced heart disease: morphology, changes in catecholamine synthesis and content, beta-adrenoceptor density, and hemodynamic function in an experimental model. , 1992, Radiation research.
[133] S. Schultz-Hector. Radiation-induced heart disease: review of experimental data on dose response and pathogenesis. , 1992, International journal of radiation biology.
[134] P. Kubes,et al. Nitric oxide: an endogenous modulator of leukocyte adhesion. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[135] J. Wondergem,et al. In vitro assessment of cardiac performance after irradiation using an isolated working rat heart preparation. , 1991, International journal of radiation biology.
[136] K. Trott,et al. Endothelial cell proliferation in the rat heart following local heart irradiation. , 1990, International journal of radiation biology.
[137] H. Esterbauer,et al. Possible mutagens derived from lipids and lipid precursors. , 1990, Mutation research.
[138] B. Trock,et al. Irradiation-related ischemic heart disease. , 1990, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[139] R. E. Smith,et al. The effect of radiation therapy on von Willebrand factor in patients with angiosarcoma. , 1989, Radiotherapy and oncology : journal of the European Society for Therapeutic Radiology and Oncology.
[140] T. D. Du Clos. C-reactive protein reacts with the U1 small nuclear ribonucleoprotein. , 1989, Journal of immunology.
[141] L. F. Fajardo. The unique physiology of endothelial cells and its implications in radiobiology. , 1989, Frontiers of radiation therapy and oncology.
[142] S. Lauk. Endothelial alkaline phosphatase activity loss as an early stage in the development of radiation-induced heart disease in rats. , 1987, Radiation research.
[143] M. Dunn,et al. Effects of irradiation on endothelial cell-polymorphonuclear leukocyte interactions. , 1986, Journal of applied physiology.
[144] F. Dijk,et al. On the cellular origin and development of atheromatous plaques , 1983, Virchows Archiv. B, Cell pathology including molecular pathology.
[145] S. Maeda. PATHOLOGY OF EXPERIMENTAL RADIATION PANCARDITIS I. , 1980 .
[146] A. Nadas,et al. Rat pulmonary circulation after chronic hypoxia: hemodynamic and structural features. , 1979, The American journal of physiology.
[147] A. Konings,et al. Initial events in radiation-induced atheromatosis. II. Damage to intimal cells. , 1978, Strahlentherapie.
[148] A. Konings,et al. Initial events in radiation-induced atheromatosis I. Activation of lysosomal enzymes. , 1975, Strahlentherapie.
[149] L. Reid,et al. The pulmonary circulation in cystic fibrosis. , 1975, Thorax.
[150] M. H. Kaplan,et al. Specificity of C-Reactive Protein for Choline Phosphate Residues of Pneumococcal C-Polysaccharide , 1971, Proceedings of the Society for Experimental Biology and Medicine. Society for Experimental Biology and Medicine.
[151] A. Lazou,et al. The role of PPAR in myocardial response to ischemia in normal and diseased heart. , 2011, General physiology and biophysics.
[152] B. Chauvet,et al. [Radiation-related heart toxicity]. , 2011, Cancer radiotherapie : journal de la Societe francaise de radiotherapie oncologique.
[153] Michael J Morgan,et al. Crosstalk of reactive oxygen species and NF-κB signaling , 2011, Cell Research.
[154] C. Folmes,et al. Myocardial fatty acid metabolism in health and disease. , 2010, Physiological reviews.
[155] Yanjie Lu,et al. MicroRNAs: a novel class of potential therapeutic targets for cardiovascular diseases , 2010, Acta Pharmacologica Sinica.
[156] N. Tribulova,et al. Myocardial gap junctions: targets for novel approaches in the prevention of life-threatening cardiac arrhythmias. , 2008, Physiological research.
[157] K. Naseem,et al. Nitric oxide in blood. The nitrosative-oxidative disequilibrium hypothesis on the pathogenesis of cardiovascular disease. , 2007, The FEBS journal.
[158] K. Trott,et al. Radiation-induced cardiovascular diseases: is the epidemiologic evidence compatible with the radiobiologic data? , 2007, International journal of radiation oncology, biology, physics.
[159] G. Lopaschuk,et al. Chronic activation of PPARα is detrimental to cardiac recovery after ischemia , 2006 .
[160] K. Nakachi,et al. Long-term effects of radiation dose on inflammatory markers in atomic bomb survivors. , 2005, The American journal of medicine.
[161] J. Huss,et al. Nuclear receptor signaling and cardiac energetics. , 2004, Circulation research.
[162] Steven E Lipshultz,et al. Radiation-associated cardiovascular disease. , 2003, Critical reviews in oncology/hematology.
[163] W. Bao,et al. Activation of Peroxisome Proliferator–Activated Receptor- (cid:1) Protects the Heart From Ischemia/Reperfusion Injury , 2003 .
[164] D. Holmes,et al. Activated nuclear factor-kappaB is present in the coronary vasculature in experimental hypercholesterolemia. , 2000, Atherosclerosis.
[165] G. Gyenes. Radiation-induced ischemic heart disease in breast cancer--a review. , 1998, Acta oncologica.
[166] C. Mueller-Dieckmann,et al. Tyrosine phosphorylation of I kappa B-alpha activates NF-kappa B without proteolytic degradation of I kappa B-alpha. , 1996, Cell.
[167] D. Lawrence. Transforming growth factor-beta: a general review. , 1996, European cytokine network.
[168] P. Baeuerle,et al. Function and activation of NF-kappa B in the immune system. , 1994, Annual review of immunology.
[169] I. Lax,et al. Cardiovascular mortality in a randomized trial of adjuvant radiation therapy versus surgery alone in primary breast cancer. , 1992, International journal of radiation oncology, biology, physics.
[170] H. Esterbauer,et al. Chemistry and biochemistry of 4-hydroxynonenal, malonaldehyde and related aldehydes. , 1991, Free radical biology & medicine.
[171] K. Trott,et al. Radiation induced heart disease in hypertensive rats. , 1988, International journal of radiation oncology, biology, physics.
[172] S. Maeda. Pathology of experimental radiation pancarditis. I. Observation on radiation-induced heart injuries following a single dose of x-ray irradiation to rabbit heart with special reference to its pathogenesis. , 1980, Acta pathologica japonica.
[173] J. Hopewell,et al. Changes in the microcirculation of normal tissues after irradiation. , 1978, International journal of radiation oncology, biology, physics.
[174] A. Konings,et al. INITIAL EVENTS IN RADIATION-INDUCED ATHEROMATOSIS , 1976 .