Ex vivo culture of human atherosclerotic plaques: A model to study immune cells in atherogenesis.
暂无分享,去创建一个
W. Fitzgerald | L. Margolis | E. Vasilieva | M. Vagida | A. Shpektor | D. Vorobyeva | A. Lebedeva | O. Ivanova | E. Felker | N. Danilova | V. Gontarenko
[1] Gary Tse,et al. Animal models of atherosclerosis , 2017, Biomedical reports.
[2] J. Grivel,et al. Cytomegalovirus‐Productive Infection Is Associated With Acute Coronary Syndrome , 2016, Journal of the American Heart Association.
[3] A. Tedgui,et al. Adaptive (T and B Cells) Immunity and Control by Dendritic Cells in Atherosclerosis , 2014, Circulation research.
[4] C. Gleissner,et al. A human ex vivo atherosclerotic plaque model to study lesion biology. , 2014, Journal of visualized experiments : JoVE.
[5] J. Badimón,et al. Pathophysiology of Acute Coronary Syndrome , 2014, Current Atherosclerosis Reports.
[6] A. von Eckardstein,et al. A Three-Dimensional Engineered Artery Model for In Vitro Atherosclerosis Research , 2013, PloS one.
[7] P. Hopkins,et al. Molecular biology of atherosclerosis. , 2013, Physiological reviews.
[8] J. Zamora,et al. The CD4/CD8 ratio as a marker T-cell activation, senescence and activation/exhaustion in treated HIV-infected children and young adults , 2013, AIDS.
[9] P. Blank,et al. Activation of T Lymphocytes in Atherosclerotic Plaques , 2011, Arteriosclerosis, thrombosis, and vascular biology.
[10] G. Tellides,et al. Activation of human vascular cells decreases their expression of transforming growth factor-beta. , 2011, Atherosclerosis.
[11] J. Visvader,et al. Discovery of novel mechanosensitive genes in vivo using mouse carotid artery endothelium exposed to disturbed flow. , 2010, Blood.
[12] R. Virmani,et al. Concept of vulnerable/unstable plaque. , 2010, Arteriosclerosis, thrombosis, and vascular biology.
[13] A. Tedgui,et al. Adaptive T cell immune responses and atherogenesis. , 2010, Current opinion in pharmacology.
[14] Yoshihisa Okamoto,et al. Inflammation in atherosclerosis: transition from theory to practice. , 2010, Circulation journal : official journal of the Japanese Circulation Society.
[15] J. Grivel,et al. Use of human tissue explants to study human infectious agents , 2009, Nature Protocols.
[16] D. Schrijvers,et al. Mertk Receptor Mutation Reduces Efferocytosis Efficiency and Promotes Apoptotic Cell Accumulation and Plaque Necrosis in Atherosclerotic Lesions of Apoe−/− Mice , 2008, Arteriosclerosis, thrombosis, and vascular biology.
[17] H. Sohn,et al. Zinc deficiency decreased cell viability both in endothelial EA.hy926 cells and mouse aortic culture ex vivo and its implication for anti-atherosclerosis , 2008, Nutrition research and practice.
[18] Mahavir Singh,et al. T-cells from advanced atherosclerotic lesions recognize hHSP60 and have a restricted T-cell receptor repertoire , 2008, Experimental Gerontology.
[19] F. D'armiento,et al. Decreased Paraoxonase-2 Expression in Human Carotids During the Progression of Atherosclerosis , 2008, Arteriosclerosis, thrombosis, and vascular biology.
[20] A. Rebuzzi,et al. Unusual CD4+CD28nullT Lymphocytes and Recurrence of Acute Coronary Events , 2007 .
[21] S. Poppert,et al. Chlamydia pneumoniae in an ex vivo human artery culture model. , 2006, Atherosclerosis.
[22] M. Chiariello,et al. Patients With Acute Coronary Syndrome Show Oligoclonal T-Cell Recruitment Within Unstable Plaque: Evidence for a Local, Intracoronary Immunologic Mechanism , 2006, Circulation.
[23] C. Vahl,et al. A novel in vitro model for the study of plaque development in atherosclerosis , 2005, Thrombosis and Haemostasis.
[24] Shu Chien,et al. Shear stress inhibits adhesion molecule expression in vascular endothelial cells induced by coculture with smooth muscle cells. , 2003, Blood.
[25] H. Kruth. Sequestration of aggregated low-density lipoproteins by macrophages , 2002, Current opinion in lipidology.
[26] T. Dreyer,et al. Insulin and local growth factor PDGF induce intimal hyperplasia in bypass graft culture models of saphenous vein and internal mammary artery. , 2002, European journal of cardio-thoracic surgery : official journal of the European Association for Cardio-thoracic Surgery.
[27] L. Badimón. Atherosclerosis and Thrombosis: Lessons from Animal Models , 2001, Thrombosis and Haemostasis.
[28] G. Nash,et al. Cellular Pathology of Atherosclerosis: Smooth Muscle Cells Prime Cocultured Endothelial Cells for Enhanced Leukocyte Adhesion , 2001, Circulation research.
[29] Xinghua Zhou,et al. Transfer of CD4+ T Cells Aggravates Atherosclerosis in Immunodeficient Apolipoprotein E Knockout Mice , 2000, Circulation.
[30] Y. Yazaki,et al. An in vitro coculture model of transmigrant monocytes and foam cell formation. , 2000, Arteriosclerosis, thrombosis, and vascular biology.
[31] J. Gschwend,et al. A human arterial organ culture model of postangioplasty restenosis: results up to 56 days after ballooning. , 1999, Atherosclerosis.
[32] P. Tsao,et al. Regression of atherosclerosis: role of nitric oxide and apoptosis. , 1999, Circulation.
[33] M. Halks-Miller,et al. Expression of interleukin-6 in atherosclerotic lesions of male ApoE-knockout mice: inhibition by 17beta-estradiol. , 1998, Arteriosclerosis, thrombosis, and vascular biology.
[34] H. Hanke,et al. Nikolaj Nikolajewitsch Anitschkow (1885-1964) established the cholesterol-fed rabbit as a model for atherosclerosis research. , 1997, Atherosclerosis.
[35] A. Di Santo,et al. Monocytes upregulate endothelial cell expression of tissue factor: a role for cell-cell contact and cross-talk. , 1997, Blood.
[36] G. Hansson,et al. Evidence for a local immune response in atherosclerosis. CD4+ T cells infiltrate lesions of apolipoprotein-E-deficient mice. , 1996, The American journal of pathology.
[37] R. Ross,et al. The process of atherogenesis — cellular and molecular interaction: from experimental animal models to humans , 1992, Diabetologia.
[38] R. Hoffman. Three-dimensional histoculture: origins and applications in cancer research. , 1991, Cancer cells.
[39] R. Hoffman,et al. Skin toxicity determined in vitro by three-dimensional, native-state histoculture. , 1991, Proceedings of the National Academy of Sciences of the United States of America.
[40] B. Lewis,et al. Modified plasma-derived lipoproteins in human atherosclerotic plaques. , 1988, Atherosclerosis.
[41] G. Bondjers,et al. Regional Accumulations of T Cells, Macrophages, and Smooth Muscle Cells in the Human Atherosclerotic Plaque , 1986, Arteriosclerosis.
[42] G. Truskey,et al. Metabolic cooperation between vascular endothelial cells and smooth muscle cells in co-culture: changes in low density lipoprotein metabolism , 1985, The Journal of cell biology.
[43] A. J. Day,et al. An investigation by tissue culture techniques on the growth of foam cells isolated from rabbit atherosclerotic lesions. , 1969, Journal of atherosclerosis research.
[44] Hollis G. Potter,et al. Author Manuscript , 2013 .
[45] F. Tubach,et al. In vitro and in vivo evidence for the role of elastase shedding of CD163 in human atherothrombosis. , 2012, European heart journal.
[46] A. Rebuzzi,et al. Unusual CD4+CD28null T lymphocytes and recurrence of acute coronary events. , 2007, Journal of the American College of Cardiology.
[47] W. Frishman. Patients With Acute Coronary Syndrome Show Oligoclonal T-Cell Recruitment Within Unstable Plaque: Evidence for a Local, Intracoronary Immunologic Mechanism , 2007 .
[48] D. Steinberg,et al. Rabbit and human atherosclerotic lesions contain IgG that recognizes epitopes of oxidized LDL. , 1994, Arteriosclerosis and thrombosis : a journal of vascular biology.
[49] P. Serruys,et al. Proliferation and extracellular matrix synthesis of smooth muscle cells cultured from human coronary atherosclerotic and restenotic lesions. , 1994, Journal of the American College of Cardiology.
[50] V. Babaev,et al. Primary culture of endothelial cells from atherosclerotic human aorta. Part 1. Identification, morphological and ultrastructural characteristics of two endothelial cell subpopulations. , 1986, Atherosclerosis.
[51] P. D. de Groot,et al. Reconstitution of the vascular wall in vitro. A novel model to study interactions between endothelial and smooth muscle cells. , 1986, Experimental cell research.