The Biological Parallels Between Atherosclerosis and Cardiac Allograft Vasculopathy: Implications for Solid Organ Chronic Rejection
暂无分享,去创建一个
[1] A. Chauhan,et al. Differential Roles of Endothelial Cell-Derived and Smooth Muscle Cell-Derived Fibronectin Containing Extra Domain A in Early and Late Atherosclerosis , 2020, Arteriosclerosis, thrombosis, and vascular biology.
[2] Feng Wang,et al. Oscillatory Shear Stress Induces Oxidative Stress via TLR4 Activation in Endothelial Cells , 2019, Mediators of inflammation.
[3] Z. Popov,et al. Hypertension after Kidney Transplantation: Clinical Significance and Therapeutical Aspects , 2019, Open access Macedonian journal of medical sciences.
[4] J. Bagley,et al. Hyperlipidemia and Allograft Rejection , 2019, Current Transplantation Reports.
[5] F. Hu,et al. M2 Macrophages as a Potential Target for Antiatherosclerosis Treatment , 2019, Neural plasticity.
[6] Gregory B. Lim. IL-1 signalling in atherosclerosis , 2019, Nature Reviews Cardiology.
[7] Jenny R. Roberts,et al. Effect of Age, High-Fat Diet, and Rat Strain on Serum Biomarkers and Telomere Length and Global DNA Methylation in Peripheral Blood Mononuclear Cells , 2019, Scientific Reports.
[8] A. Yeung,et al. Association of Endothelin-1 With Accelerated Cardiac Allograft Vasculopathy and Late Mortality Following Heart Transplantation. , 2019, Journal of cardiac failure.
[9] Sangdun Choi,et al. Recent clinical trends in Toll‐like receptor targeting therapeutics , 2018, Medicinal research reviews.
[10] S. Bangalore,et al. Perioperative cardiovascular outcomes of non-cardiac solid organ transplant surgery , 2018, European heart journal. Quality of care & clinical outcomes.
[11] Mohammad Aqdas,et al. TLR-3 Stimulation Skews M2 Macrophages to M1 Through IFN-αβ Signaling and Restricts Tumor Progression , 2018, Front. Immunol..
[12] M. Uchiyama,et al. Graft protective effect and induction of CD4+Foxp3+ cell by Thrombomodulin on allograft arteriosclerosis in mice , 2018, Journal of Cardiothoracic Surgery.
[13] M. Ansari,et al. A Phase I Clinical Trial with Ex Vivo Expanded Recipient Regulatory T cells in Living Donor Kidney Transplants , 2018, Scientific Reports.
[14] Xiaoshun He,et al. Macrophage subpopulations and their impact on chronic allograft rejection versus graft acceptance in a mouse heart transplant model , 2018, American journal of transplantation : official journal of the American Society of Transplantation and the American Society of Transplant Surgeons.
[15] L. See,et al. Cardiovascular disease risk in patients receiving organ transplantation: a national cohort study , 2017, Transplant international : official journal of the European Society for Organ Transplantation.
[16] J. Sánchez-Guerrero,et al. Safety, pharmacokinetics and pharmacodynamics of AMG 811, an anti-interferon-γ monoclonal antibody, in SLE subjects without or with lupus nephritis , 2017, Lupus Science & Medicine.
[17] Jeroen J. Bax,et al. Relationship of Hypertension to Coronary Atherosclerosis and Cardiac Events in Patients With Coronary Computed Tomographic Angiography , 2017, Hypertension.
[18] D. Holland,et al. Study of Cardiovascular Outcomes in Renal Transplantation: A Prospective, Multicenter Study to Determine the Incidence of Cardiovascular Events in Renal Transplant Recipients in Ontario, Canada , 2017, Canadian journal of kidney health and disease.
[19] Hua-Lin Wu,et al. Recombinant Thrombomodulin Exerts Anti-autophagic Action in Endothelial Cells and Provides Anti-atherosclerosis Effect in Apolipoprotein E Deficient Mice , 2017, Scientific Reports.
[20] H. Uzun,et al. Endothelial Dysfunction and Hypertension. , 2016, Advances in experimental medicine and biology.
[21] M. Kloc,et al. Graft‐Infiltrating Macrophages Adopt an M2 Phenotype and Are Inhibited by Purinergic Receptor P2X7 Antagonist in Chronic Rejection , 2016, American journal of transplantation : official journal of the American Society of Transplantation and the American Society of Transplant Surgeons.
[22] Í. M. de Oliveira,et al. Hypertension and arterial stiffness in heart transplantation patients , 2016, Clinics.
[23] A. Yeung,et al. Attenuated-Signal Plaque Progression Predicts Long-Term Mortality After Heart Transplantation: IVUS Assessment of Cardiac Allograft Vasculopathy. , 2016, Journal of the American College of Cardiology.
[24] Charles A. Taylor,et al. Computational fluid dynamic measures of wall shear stress are related to coronary lesion characteristics , 2016, Heart.
[25] Q. Ning,et al. HMGB1 exacerbates bronchiolitis obliterans syndrome via RAGE/NF-κB/HPSE signaling to enhance latent TGF-β release from ECM. , 2016, American journal of translational research.
[26] P. Klimeczek,et al. Analysis of Soluble Molecular Fibronectin-Fibrin Complexes and EDA-Fibronectin Concentration in Plasma of Patients with Atherosclerosis , 2016, Inflammation.
[27] A. Agarwal,et al. Post-transplant dyslipidemia: Mechanisms, diagnosis and management. , 2016, World journal of transplantation.
[28] N. Klein,et al. Inflammatory Cytokines, Endothelial Function, and Chronic Allograft Vasculopathy in Children: An Investigation of the Donor and Recipient Vasculature After Heart Transplantation , 2016, American journal of transplantation : official journal of the American Society of Transplantation and the American Society of Transplant Surgeons.
[29] T. Nazif,et al. Increased coronary lipid accumulation in heart transplant recipients with prior high-grade cellular rejection: novel insights from near-infrared spectroscopy , 2016, The International Journal of Cardiovascular Imaging.
[30] U. Landmesser,et al. DPP-4 inhibition ameliorates atherosclerosis by priming monocytes into M2 macrophages. , 2015, International journal of cardiology.
[31] A. Chauhan,et al. Fibronectin Splicing Variants Containing Extra Domain A Promote Atherosclerosis in Mice Through Toll-Like Receptor 4 , 2015, Arteriosclerosis, thrombosis, and vascular biology.
[32] M. Kaplan,et al. STAT4 deficiency reduces the development of atherosclerosis in mice. , 2015, Atherosclerosis.
[33] I. Narita,et al. Atherosclerosis following renal injury is ameliorated by pioglitazone and losartan via macrophage phenotype. , 2015, Atherosclerosis.
[34] C. Weber,et al. Chemokines and their receptors in Atherosclerosis , 2015, Journal of Molecular Medicine.
[35] S. V. Lopes,et al. Reduced Progression of Cardiac Allograft Vasculopathy with Routine Use of Induction Therapy with Basiliximab , 2015, Arquivos brasileiros de cardiologia.
[36] A. Orekhov,et al. Macrophage phenotypic plasticity in atherosclerosis: The associated features and the peculiarities of the expression of inflammatory genes. , 2015, International journal of cardiology.
[37] C. Lobe,et al. CCR5 facilitates endothelial progenitor cell recruitment and promotes the stabilization of atherosclerotic plaques in ApoE−/− mice , 2015, Stem Cell Research & Therapy.
[38] D. Giddens,et al. Co-localization of Disturbed Flow Patterns and Occlusive Cardiac Allograft Vasculopathy Lesion Formation in Heart Transplant Patients , 2015, Cardiovascular engineering and technology.
[39] Xuejun Jiang,et al. Mesenchymal stem cells alleviate atherosclerosis by elevating number and function of CD4+CD25+FOXP3+ regulatory T-cells and inhibiting macrophage foam cell formation , 2015, Molecular and Cellular Biochemistry.
[40] P. Dellapelle,et al. Depletion of T Regulatory Cells Promotes Natural Killer Cell–Mediated Cardiac Allograft Vasculopathy , 2014, Transplantation.
[41] P. Xiong,et al. HMGB1 Is Involved in Chronic Rejection of Cardiac Allograft via Promoting Inflammatory‐Like mDCs , 2014, American journal of transplantation : official journal of the American Society of Transplantation and the American Society of Transplant Surgeons.
[42] W. Młynarski,et al. Therapy of type 1 diabetes with CD4(+)CD25(high)CD127-regulatory T cells prolongs survival of pancreatic islets - results of one year follow-up. , 2014, Clinical immunology.
[43] J. Gummert,et al. De novo expression of fetal ED-A+ fibronectin and B+ tenascin-C splicing variants in human cardiac allografts: potential impact for targeted therapy of rejection , 2014, Journal of Molecular Histology.
[44] Y. Momiyama,et al. Inflammation, Atherosclerosis and Coronary Artery Disease , 2014, Clinical Medicine Insights. Cardiology.
[45] L. Lerman,et al. Repeated episodes of thrombosis as a potential mechanism of plaque progression in cardiac allograft vasculopathy. , 2013, European heart journal.
[46] Amir Lerman,et al. Coronary atherosclerosis with vulnerable plaque and complicated lesions in transplant recipients: new insight into cardiac allograft vasculopathy by optical coherence tomography. , 2013, European heart journal.
[47] S. Lenna,et al. Interferon‐γ promotes vascular remodeling in human microvascular endothelial cells by upregulating endothelin (ET)‐1 and transforming growth factor (TGF) β2 , 2013, Journal of cellular physiology.
[48] E. Reed,et al. HLA Class I Antibodies Trigger Increased Adherence of Monocytes to Endothelial Cells by Eliciting an Increase in Endothelial P-Selectin and, Depending on Subclass, by Engaging FcγRs , 2013, The Journal of Immunology.
[49] G. Noll,et al. Pretransplant dyslipidaemia determines outcome in lung transplant recipients , 2013, Lipids in Health and Disease.
[50] M. Lotze,et al. Signaling of High Mobility Group Box 1 (HMGB1) through Toll-like Receptor 4 in Macrophages Requires CD14 , 2013, Molecular Medicine.
[51] M. Andrassy,et al. HMGB1 Is Associated with Atherosclerotic Plaque Composition and Burden in Patients with Stable Coronary Artery Disease , 2012, PloS one.
[52] Shu-xuan Jin,et al. Endogenous Renovascular Hypertension Combined With Low Shear Stress Induces Plaque Rupture in Apolipoprotein E–Deficient Mice , 2012, Arteriosclerosis, thrombosis, and vascular biology.
[53] E. Geissler. The ONE Study compares cell therapy products in organ transplantation: introduction to a review series on suppressive monocyte-derived cells , 2012, Transplantation research.
[54] E. White,et al. Recipient‐derived EDA fibronectin promotes cardiac allograft fibrosis , 2012, The Journal of pathology.
[55] K. Ley,et al. NR4A1 (Nur77) Deletion Polarizes Macrophages Toward an Inflammatory Phenotype and Increases Atherosclerosis , 2012, Circulation research.
[56] B. McManus,et al. Induction of Endothelial Nitric Oxide Synthase Expression by IL-17 in Human Vascular Endothelial Cells: Implications for Vascular Remodeling in Transplant Vasculopathy , 2012, The Journal of Immunology.
[57] N. Leitinger,et al. Phenotypic modulation of macrophages in response to plaque lipids , 2011, Current opinion in lipidology.
[58] James A. Hutchinson,et al. Cutting Edge: Immunological Consequences and Trafficking of Human Regulatory Macrophages Administered to Renal Transplant Recipients , 2011, The Journal of Immunology.
[59] W. Min,et al. AIP1 Prevents Graft Arteriosclerosis by Inhibiting Interferon-&ggr;–Dependent Smooth Muscle Cell Proliferation and Intimal Expansion , 2011, Circulation research.
[60] G. Hansson,et al. The immune system in atherosclerosis , 2011, Nature Immunology.
[61] E. Schiffrin,et al. Vascular gene expression in mice overexpressing human endothelin-1 targeted to the endothelium. , 2011, Physiological genomics.
[62] J. Wagner,et al. Infusion of ex vivo expanded T regulatory cells in adults transplanted with umbilical cord blood: safety profile and detection kinetics. , 2011, Blood.
[63] K. Wood,et al. In vivo Prevention of Transplant Arteriosclerosis by ex vivo Expanded Human Regulatory T Cells , 2010, Nature Medicine.
[64] P. Rutgeerts,et al. Fontolizumab in moderate to severe Crohn's disease: A phase 2, randomized, double‐blind, placebo‐controlled, multiple‐dose study , 2010, Inflammatory bowel diseases.
[65] A. Lerman,et al. Inflammatory burden of cardiac allograft coronary atherosclerotic plaque is associated with early recurrent cellular rejection and predicts a higher risk of vasculopathy progression. , 2009, Journal of the American College of Cardiology.
[66] C. Monaco,et al. The inextricable link between atherosclerosis and prototypical inflammatory diseases rheumatoid arthritis and systemic lupus erythematosus , 2009, Arthritis research & therapy.
[67] Fang Zhou,et al. Molecular Mechanisms of IFN-γ to Up-Regulate MHC Class I Antigen Processing and Presentation , 2009, International reviews of immunology.
[68] C. Lawson,et al. ICAM-1 signaling in endothelial cells , 2009, Pharmacological reports : PR.
[69] L. Martínez-Dolz,et al. Influence of traditional cardiovascular risk factors in the recipient on the development of cardiac allograft vasculopathy after heart transplantation. , 2008, Transplantation proceedings.
[70] C. Colangelo,et al. Amelioration of Human Allograft Arterial Injury by Atorvastatin or Simvastatin Correlates With Reduction of Interferon-γ Production by Infiltrating T Cells , 2008, Transplantation.
[71] F. Baralle,et al. Absence of regulated splicing of fibronectin EDA exon reduces atherosclerosis in mice. , 2008, Atherosclerosis.
[72] J. Madsen,et al. Macrophage Depletion Suppresses Cardiac Allograft Vasculopathy in Mice , 2007, American journal of transplantation : official journal of the American Society of Transplantation and the American Society of Transplant Surgeons.
[73] Elena Galkina,et al. Vascular adhesion molecules in atherosclerosis. , 2007, Arteriosclerosis, thrombosis, and vascular biology.
[74] M. Fishbein,et al. Role of the JAK/STAT Pathway in the Regulation of Interleukin-8 Transcription by Oxidized Phospholipids in Vitro and in Atherosclerosis in Vivo* , 2007, Journal of Biological Chemistry.
[75] G. Keren,et al. Role of Naturally Occurring CD4+CD25+ Regulatory T Cells in Experimental Atherosclerosis , 2007, Arteriosclerosis, thrombosis, and vascular biology.
[76] Nichola Figg,et al. Monocyte/Macrophage Suppression in CD11b Diphtheria Toxin Receptor Transgenic Mice Differentially Affects Atherogenesis and Established Plaques , 2007, Circulation research.
[77] A. Bharat,et al. Early Posttransplant Inflammation Promotes the Development of Alloimmunity and Chronic Human Lung Allograft Rejection , 2007, Transplantation.
[78] N. de Jonge,et al. The Chemokine and Chemokine Receptor Profile of Infiltrating Cells in the Wall of Arteries With Cardiac Allograft Vasculopathy Is Indicative of a Memory T–Helper 1 Response , 2006, Circulation.
[79] F. Grosveld,et al. Atherosclerotic Lesion Size and Vulnerability Are Determined by Patterns of Fluid Shear Stress , 2006, Circulation.
[80] M. Mehra,et al. Contemporary Concepts in Prevention and Treatment of Cardiac Allograft Vasculopathy , 2006, American journal of transplantation : official journal of the American Society of Transplantation and the American Society of Transplant Surgeons.
[81] R. Flavell,et al. Natural regulatory T cells control the development of atherosclerosis in mice , 2006, Nature Medicine.
[82] P. Tsao,et al. Prolonged cold ischemia in rat cardiac allografts promotes ischemia-reperfusion injury and the development of graft coronary artery disease in a linear fashion. , 2005, The Journal of heart and lung transplantation : the official publication of the International Society for Heart Transplantation.
[83] K. Cunningham,et al. The role of shear stress in the pathogenesis of atherosclerosis , 2005, Laboratory Investigation.
[84] A. Jeppsson,et al. Tumor necrosis factor gene polymorphism and cardiac allograft vasculopathy. , 2005, The Journal of heart and lung transplantation : the official publication of the International Society for Heart Transplantation.
[85] H. Methe,et al. Evidence for a Role of Toll-Like Receptor 4 in Development of Chronic Allograft Rejection after Cardiac Transplantation , 2004, Transplantation.
[86] M. Makuuchi,et al. Antimonocyte Chemoattractant Protein-1 Gene Therapy Attenuates Graft Vasculopathy , 2004, Arteriosclerosis, thrombosis, and vascular biology.
[87] W. Sessa,et al. T cell-mediated vascular dysfunction of human allografts results from IFN-gamma dysregulation of NO synthase. , 2004, The Journal of clinical investigation.
[88] R. Pai,et al. Atherogenic Effect of Interleukin-2 and Antiatherogenic Effect of Interleukin-2 Antibody in Apo-E-Deficient Mice , 2004, Angiology.
[89] M. Fishbein,et al. Combined Blockade of the Chemokine Receptors CCR1 and CCR5 Attenuates Chronic Rejection , 2004, Circulation.
[90] J. Jürgensen,et al. Hypertension increases expression of growth factors and MHC II in chronic allograft nephropathy. , 2003, Kidney international.
[91] W. Hancock,et al. Recipient hypertension potentiates chronic functional and structural injury of rat renal allografts , 2002, Transplantation.
[92] P. Libby,et al. Differential Expression of the IFN-γ-Inducible CXCR3-Binding Chemokines, IFN-Inducible Protein 10, Monokine Induced by IFN, and IFN-Inducible T Cell α Chemoattractant in Human Cardiac Allografts: Association with Cardiac Allograft Vasculopathy and Acute Rejection1 , 2002, The Journal of Immunology.
[93] L. Klein,et al. Coronary Endothelial Dysfunction After Heart Transplantation Predicts Allograft Vasculopathy and Cardiac Death , 2002, Circulation.
[94] Eckart Fleck,et al. Shear stress and vascular remodeling: study of cardiac allograft coronary artery disease as a model of diffuse atherosclerosis. , 2002, The Journal of heart and lung transplantation : the official publication of the International Society for Heart Transplantation.
[95] M. Krieger,et al. Loss of SR-BI Expression Leads to the Early Onset of Occlusive Atherosclerotic Coronary Artery Disease, Spontaneous Myocardial Infarctions, Severe Cardiac Dysfunction, and Premature Death in Apolipoprotein E-Deficient Mice , 2002, Circulation research.
[96] A. Haverich,et al. Impact of vascular branching sites on focal progression of allograft vasculopathy in transplanted hearts. , 2001, Atherosclerosis.
[97] M. Cybulsky,et al. A major role for VCAM-1, but not ICAM-1, in early atherosclerosis. , 2001, The Journal of clinical investigation.
[98] C. Dessy,et al. Hydroxy-Methylglutaryl–Coenzyme A Reductase Inhibition Promotes Endothelial Nitric Oxide Synthase Activation Through a Decrease in Caveolin Abundance , 2001, Circulation.
[99] A. Daugherty,et al. Exogenous interferon-γ enhances atherosclerosis in apolipoprotein E-/- mice , 2000 .
[100] R. Westrick,et al. Hyperlipidemia promotes thrombosis after injury to atherosclerotic vessels in apolipoprotein E-deficient mice. , 2000, Arteriosclerosis, thrombosis, and vascular biology.
[101] D. Wagner,et al. Prominent role of P-selectin in the development of advanced atherosclerosis in ApoE-deficient mice. , 2000, Circulation.
[102] J. Evans,et al. Role of platelet-derived growth factor in allograft vasculopathy. , 2000, Annals of surgery.
[103] M. Russell,et al. Attenuated cardiac allograft vasculopathy in mice with targeted deletion of the transcription factor STAT4. , 2000, Circulation.
[104] D. Mancini,et al. Prevention of rejection in cardiac transplantation by blockade of the interleukin-2 receptor with a monoclonal antibody. , 2000, The New England journal of medicine.
[105] P. Sakkinen,et al. Interleukin-6 exacerbates early atherosclerosis in mice. , 1999, Arteriosclerosis, thrombosis, and vascular biology.
[106] R. Poston,et al. Rapamycin reverses chronic graft vascular disease in a novel cardiac allograft model. , 1999, Circulation.
[107] K. Williams,et al. Atherosclerosis--an inflammatory disease. , 1999, The New England journal of medicine.
[108] B. Rollins,et al. Monocyte chemoattractant protein-1 accelerates atherosclerosis in apolipoprotein E-deficient mice. , 1999, Arteriosclerosis, thrombosis, and vascular biology.
[109] J. Balligand,et al. Hypercholesterolemia decreases nitric oxide production by promoting the interaction of caveolin and endothelial nitric oxide synthase. , 1999, The Journal of clinical investigation.
[110] I. Charo,et al. Decreased lesion formation in CCR2−/− mice reveals a role for chemokines in the initiation of atherosclerosis , 1998, Nature.
[111] M. Russell,et al. Immune sources of TGF-βI protect against graft vasculopathy: Graft vascular remodeling in TGF-βI-deficient mice , 1998 .
[112] D. Harrison,et al. Cellular and molecular mechanisms of endothelial cell dysfunction. , 1997, The Journal of clinical investigation.
[113] Simon C Watkins,et al. Inducible nitric oxide synthase suppresses the development of allograft arteriosclerosis. , 1997, The Journal of clinical investigation.
[114] P. Libby,et al. Interferon-gamma deficiency prevents coronary arteriosclerosis but not myocardial rejection in transplanted mouse hearts. , 1997, The Journal of clinical investigation.
[115] K. Hirata,et al. Lysophosphatidylcholine inhibits receptor-mediated Ca2+ mobilization in intact endothelial cells of rabbit aorta. , 1997, Arteriosclerosis, thrombosis, and vascular biology.
[116] N. Koide,et al. Expression of intercellular adhesion molecule-1 (ICAM-1) on vascular endothelial cells and renal tubular cells in the generalized Shwartzman reaction as an experimental disseminated intravascular coagulation model. , 1997, FEMS immunology and medical microbiology.
[117] J. Thompson,et al. Immunolocalization of FGF-1 and receptors in human renal allograft vasculopathy associated with chronic rejection. , 1996, Transplantation.
[118] V. Fuster,et al. Human monocyte-derived macrophages induce collagen breakdown in fibrous caps of atherosclerotic plaques. Potential role of matrix-degrading metalloproteinases and implications for plaque rupture. , 1995, Circulation.
[119] P. Uberfuhr,et al. Intraindividual variability of cardiac allograft vasculopathy as assessed by intravascular ultrasound. , 1995, The American journal of cardiology.
[120] T. Drake,et al. Vascular cell adhesion molecule-1 is induced on vascular endothelia and medial smooth muscle cells in experimental cardiac allograft vasculopathy. , 1995, Circulation.
[121] P. Vanhoutte,et al. Endothelium-dependent responses in hypertension. , 1995, Hypertension research : official journal of the Japanese Society of Hypertension.
[122] J. Witztum,et al. T lymphocytes from human atherosclerotic plaques recognize oxidized low density lipoprotein. , 1995, Proceedings of the National Academy of Sciences of the United States of America.
[123] M. Orloff,et al. Prevention Of Chronic Rejection And Graft Arteriosclerosis By Tolerance Induction , 1995, Transplantation.
[124] R. Poston,et al. Increase in the adhesion molecule P-selectin in endothelium overlying atherosclerotic plaques. Coexpression with intercellular adhesion molecule-1. , 1994, The American journal of pathology.
[125] N. Maeda,et al. Spontaneous hypercholesterolemia and arterial lesions in mice lacking apolipoprotein E. , 1992, Science.
[126] J. Loscalzo,et al. Impaired vasodilation of forearm resistance vessels in hypercholesterolemic humans. , 1990, The Journal of clinical investigation.
[127] J L Witztum,et al. Evidence for the presence of oxidatively modified low density lipoprotein in atherosclerotic lesions of rabbit and man. , 1989, The Journal of clinical investigation.
[128] G. Hansson,et al. Detection of activated T lymphocytes in the human atherosclerotic plaque. , 1989, The American journal of pathology.
[129] B. Paigen,et al. Comparison of atherosclerotic lesions and HDL-lipid levels in male, female, and testosterone-treated female mice from strains C57BL/6, BALB/c, and C3H. , 1987, Atherosclerosis.
[130] J. Nilsson. Growth factors and the pathogenesis of atherosclerosis. , 1986, Atherosclerosis.
[131] P. Ganz,et al. Paradoxical vasoconstriction induced by acetylcholine in atherosclerotic coronary arteries. , 1986, The New England journal of medicine.
[132] A. Xu,et al. Focal TLR4 activation mediates disturbed flow-induced endothelial inflammation. , 2019, Cardiovascular research.
[133] J. Mas-Oliva,et al. Atherosclerosis and Cancer; A Resemblance with Far-reaching Implications. , 2017, Archives of medical research.
[134] Vl Roger,et al. American Heart Association Statistics Committee and Stroke Statistics Subcommittee. Heart disease and stroke statistics-2011 update : a report from the American Heart Association , 2011 .
[135] J. Gummert,et al. Expression of extra domain A containing fibronectin in chronic cardiac allograft rejection. , 2011, The Journal of heart and lung transplantation : the official publication of the International Society for Heart Transplantation.
[136] H. Matsubara,et al. Endothelial FGF receptor signaling accelerates atherosclerosis. , 2011, American journal of physiology. Heart and circulatory physiology.
[137] A. Lerman,et al. Multicenter assessment of coronary allograft vasculopathy by intravascular ultrasound-derived analysis of plaque composition , 2009, Nature Clinical Practice Cardiovascular Medicine.
[138] J. Pober,et al. Interferon-gamma elicits arteriosclerosis in the absence of leukocytes. , 2000, Nature.
[139] W. Hancock,et al. Endothelial activation and cytokine expression in human acute cardiac allograft rejection , 1998, Pathology.
[140] H. Lithell,et al. Chronic vascular rejection and hyperlipoproteinemia in renal transplant patients , 1993 .
[141] T. Shimokama,et al. Immunohistochemical and ultrastructural demonstration of the lymphocyte-macrophage interaction in human aortic intima. , 1991, Modern pathology : an official journal of the United States and Canadian Academy of Pathology, Inc.
[142] Transforming Growth Factor-β Mediates Balance Between Inflammation and Fibrosis During Plaque Progression , 2022 .