Spatial Heterogeneity of Endothelial Phenotypes Correlates With Side-Specific Vulnerability to Calcification in Normal Porcine Aortic Valves
暂无分享,去创建一个
Craig A. Simmons | Gregory R. Grant | Elisabetta Manduchi | Peter F. Davies | C. Simmons | G. Grant | P. Davies | E. Manduchi
[1] S Rozen,et al. Primer3 on the WWW for general users and for biologist programmers. , 2000, Methods in molecular biology.
[2] Karyn S Kunzelman,et al. A coupled fluid-structure finite element model of the aortic valve and root. , 2003, The Journal of heart valve disease.
[3] D. Heinegård,et al. The structure of a 38-kDa leucine-rich protein (chondroadherin) isolated from bovine cartilage. , 1994, The Journal of biological chemistry.
[4] H. Itoh,et al. Cytokine-induced C-type natriuretic peptide (CNP) secretion from vascular endothelial cells--evidence for CNP as a novel autocrine/paracrine regulator from endothelial cells. , 1993, Endocrinology.
[5] M D McKee,et al. Calcification of vascular smooth muscle cell cultures: inhibition by osteopontin. , 1999, Circulation research.
[6] Emile R. Mohler,et al. Bone Formation and Inflammation in Cardiac Valves , 2001, Circulation.
[7] D. Towler,et al. Osteogenic regulation of vascular calcification: an early perspective. , 2004, American journal of physiology. Endocrinology and metabolism.
[8] K. Watson,et al. Bone morphogenetic protein expression in human atherosclerotic lesions. , 1993, The Journal of clinical investigation.
[9] T. Matsunaga,et al. NF-kappa B activation in endothelial cells treated with oxidized high-density lipoprotein. , 2003, Biochemical and biophysical research communications.
[10] G. Garcı́a-Cardeña,et al. Biomechanical activation of vascular endothelium as a determinant of its functional phenotype , 2001, Proceedings of the National Academy of Sciences of the United States of America.
[11] C. Simmons,et al. A Rapid, Reliable Method to Isolate High Quality Endothelial RNA from Small Spatially-Defined Locations , 2004, Annals of Biomedical Engineering.
[12] W. R. Taylor,et al. Bone Morphogenic Protein 4 Produced in Endothelial Cells by Oscillatory Shear Stress Stimulates an Inflammatory Response* , 2003, Journal of Biological Chemistry.
[13] H. Dietz,et al. Pathogenetic sequence for aneurysm revealed in mice underexpressing fibrillin-1. , 1999, Proceedings of the National Academy of Sciences of the United States of America.
[14] Y. Ikeda,et al. Advances in our understanding of peroxiredoxin, a multifunctional, mammalian redox protein , 2002, Redox report : communications in free radical research.
[15] C. Stoeckert,et al. Coexisting proinflammatory and antioxidative endothelial transcription profiles in a disturbed flow region of the adult porcine aorta. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[16] S. Morony,et al. osteoprotegerin-deficient mice develop early onset osteoporosis and arterial calcification. , 1998, Genes & development.
[17] E. Clark,et al. Osteoprotegerin Is an αvβ3-induced, NF-κB-dependent Survival Factor for Endothelial Cells* , 2000, The Journal of Biological Chemistry.
[18] Robert M Nerem,et al. Unique Morphology and Focal Adhesion Development of Valvular Endothelial Cells in Static and Fluid Flow Environments , 2004, Arteriosclerosis, thrombosis, and vascular biology.
[19] P. Geusens,et al. Differential Expression of Bone Matrix Regulatory Proteins in Human Atherosclerotic Plaques , 2001, Arteriosclerosis, thrombosis, and vascular biology.
[20] P. Andre. P‐selectin in haemostasis , 2004, British journal of haematology.
[21] D. Heinegård,et al. Cartilage matrix proteins. A basic 36-kDa protein with a restricted distribution to cartilage and bone. , 1991, The Journal of biological chemistry.
[22] Elisabetta Manduchi,et al. Fidelity and enhanced sensitivity of differential transcription profiles following linear amplification of nanogram amounts of endothelial mRNA. , 2003, Physiological genomics.
[23] Gregory R. Grant,et al. RAD and the RAD Study-Annotator: an approach to collection, organization and exchange of all relevant information for high-throughput gene expression studies , 2004, Bioinform..
[24] Y. Nishizawa,et al. 1,25-Dihydroxyvitamin D3 increases in vitro vascular calcification by modulating secretion of endogenous parathyroid hormone-related peptide. , 1998, Circulation.
[25] J. Palmblad,et al. Human umbilical vein endothelial cells generate leukotriene C4 via microsomal glutathione S-transferase type 2 and express the CysLT(1) receptor. , 2001, European journal of biochemistry.
[26] C. Otto,et al. Apolipoproteins B, (a), and E accumulate in the morphologically early lesion of 'degenerative' valvular aortic stenosis. , 1996, Arteriosclerosis, thrombosis, and vascular biology.
[27] H. Roach,et al. Pleiotrophin/Osteoblast‐Stimulating Factor 1: Dissecting Its Diverse Functions in Bone Formation , 2002, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[28] A. Pogo,et al. Induction of Duffy gene (FY) in human endothelial cells and in mouse. , 2003, Cytokine.
[29] Su‐Li Cheng,et al. Teriparatide (Human Parathyroid Hormone (1–34)) Inhibits Osteogenic Vascular Calcification in Diabetic Low Density Lipoprotein Receptor-deficient Mice* , 2003, Journal of Biological Chemistry.
[30] H. Sarau,et al. Cloning, in Vitro Expression, and Functional Characterization of a Novel Human CC Chemokine of the Monocyte Chemotactic Protein (MCP) Family (MCP-4) That Binds and Signals through the CC Chemokine Receptor 2B* , 1997, The Journal of Biological Chemistry.
[31] F. Parhami,et al. Monocyte/Macrophage Regulation of Vascular Calcification In Vitro , 2002, Circulation.
[32] J. George,et al. Overexpression of 15-Lipoxygenase in Vascular Endothelium Accelerates Early Atherosclerosis in LDL Receptor–Deficient Mice , 2000, Arteriosclerosis, thrombosis, and vascular biology.
[33] Zhisheng Jiang,et al. Effects of Adrenomedullin, C‐type Natriuretic Peptide, and Parathyroid Hormone‐Related Peptide on Calcification in Cultured Rat Vascular Smooth Muscle Cells , 2003, Journal of cardiovascular pharmacology.
[34] L. Marnett,et al. Characterization of the major hydroperoxide-reducing activity of human plasma. Purification and properties of a selenium-dependent glutathione peroxidase. , 1987, The Journal of biological chemistry.
[35] M. Longaker,et al. Hypoxia and VEGF up-regulate BMP-2 mRNA and protein expression in microvascular endothelial cells: implications for fracture healing. , 2002, Plastic and reconstructive surgery.
[36] S. Shyue,et al. NO Modulates Monocyte Chemotactic Protein-1 Expression in Endothelial Cells Under Cyclic Strain , 2001, Arteriosclerosis, thrombosis, and vascular biology.
[37] F. Parhami,et al. Lipid oxidation products have opposite effects on calcifying vascular cell and bone cell differentiation. A possible explanation for the paradox of arterial calcification in osteoporotic patients. , 1997, Arteriosclerosis, thrombosis, and vascular biology.
[38] P. Neame,et al. The link proteins , 1993, Experientia.
[39] Douglas A. Hosack,et al. Identifying biological themes within lists of genes with EASE , 2003, Genome Biology.
[40] R. Natarajan,et al. 12/15-Lipoxygenase Activity Mediates Inflammatory Monocyte/Endothelial Interactions and Atherosclerosis in Vivo* , 2004, Journal of Biological Chemistry.
[41] G Shimamoto,et al. Osteoprotegerin: A Novel Secreted Protein Involved in the Regulation of Bone Density , 1997, Cell.
[42] M. Cybulsky,et al. NF-κB: pivotal mediator or innocent bystander in atherogenesis? , 2001 .
[43] J. Eberwine,et al. Amplified RNA synthesized from limited quantities of heterogeneous cDNA. , 1990, Proceedings of the National Academy of Sciences of the United States of America.
[44] T. Mihaljevic,et al. Transcriptional profiling and growth kinetics of endothelium reveals differences between cells derived from porcine aorta versus aortic valve. , 2003, European journal of cardio-thoracic surgery : official journal of the European Association for Cardio-thoracic Surgery.
[45] J. Vermylen,et al. atherosclerosis-prone sites in response to hypercholesterolemia Endothelial von Willebrand factor recruits platelets to , 2013 .
[46] J. Mehta,et al. Regulatory role of endothelium in the expression of genes affecting arterial calcification. , 2004, Biochemical and biophysical research communications.
[47] Y. Sasai,et al. Dorsoventral Patterning in Xenopus: Inhibition of Ventral Signals by Direct Binding of Chordin to BMP-4 , 1996, Cell.
[48] Marc D McKee,et al. Extracellular matrix calcification: where is the action? , 1999, Nature Genetics.
[49] R. Behringer,et al. Spontaneous calcification of arteries and cartilage in mice lacking matrix GLA protein , 1997, Nature.
[50] A. Tajik,et al. Human Aortic Valve Calcification Is Associated With an Osteoblast Phenotype , 2003, Circulation.
[51] E. Mohler. Are atherosclerotic processes involved in aortic-valve calcification? , 2000, The Lancet.
[52] Z. Ruggeri,et al. Von Willebrand factor, platelets and endothelial cell interactions , 2003, Journal of thrombosis and haemostasis : JTH.
[53] D. Wagner,et al. Localized reduction of atherosclerosis in von Willebrand factor-deficient mice. , 2001, Blood.
[54] A. Evdokiou,et al. Expression of fibrillins and other microfibril-associated proteins in human bone and osteoblast-like cells. , 2000, Bone.
[55] R. Levy,et al. Identification and characterization of calcifying valve cells from human and canine aortic valves. , 1999, The Journal of heart valve disease.
[56] S. Hagl,et al. Receptor activator of nuclear factor κB ligand and osteoprotegerin regulate aortic valve calcification , 2004 .
[57] J. Hirabayashi,et al. A novel biological activity for galectin-1: inhibition of leukocyte-endothelial cell interactions in experimental inflammation. , 2003, The American journal of pathology.
[58] E. Clark,et al. Osteoprotegerin is an alpha vbeta 3-induced, NF-kappa B-dependent survival factor for endothelial cells. , 2000, The Journal of biological chemistry.
[59] R. Schroter,et al. Arterial Wall Shear and Distribution of Early Atheroma in Man , 1969, Nature.
[60] K. Boström,et al. Endothelial Cells Modulate Osteogenesis in Calcifying Vascular Cells , 2004, Journal of Vascular Research.
[61] Bonnie K. Lind,et al. Association of aortic-valve sclerosis with cardiovascular mortality and morbidity in the elderly. , 1999, The New England journal of medicine.
[62] D. Eyre,et al. Collagens and cartilage matrix homeostasis. , 2004, Clinical orthopaedics and related research.
[63] C. Giachelli,et al. Regulation of cardiovascular calcification. , 2004, Cardiovascular pathology : the official journal of the Society for Cardiovascular Pathology.
[64] J. Loscalzo,et al. Determinants of Human Plasma Glutathione Peroxidase (GPx-3) Expression* , 2004, Journal of Biological Chemistry.
[65] Y. Benjamini,et al. Controlling the false discovery rate: a practical and powerful approach to multiple testing , 1995 .
[66] J. Thyberg,et al. Presence of oxidized low density lipoprotein in nonrheumatic stenotic aortic valves. , 1999, Arteriosclerosis, thrombosis, and vascular biology.
[67] S. Hagl,et al. Expression of bone sialoprotein and bone morphogenetic protein-2 in calcific aortic stenosis. , 2004, The Journal of heart valve disease.
[68] T. Matsunaga,et al. NF-κB activation in endothelial cells treated with oxidized high-density lipoprotein , 2003 .
[69] J. Puzas,et al. A Role for the BMP Antagonist Chordin in Endochondral Ossification , 2002, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[70] David Botstein,et al. Endothelial cell diversity revealed by global expression profiling , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[71] M. Ferguson,et al. Osteopontin is expressed in human aortic valvular lesions. , 1995, Circulation.
[72] F. Parhami,et al. Oxidative stress modulates osteoblastic differentiation of vascular and bone cells. , 2001, Free radical biology & medicine.
[73] A. Gown,et al. Characterization of the Early Lesion of ‘Degenerative’ Valvular Aortic Stenosis: Histological and Immunohistochemical Studies , 1994, Circulation.
[74] L. Rosenberg,et al. Pleiotrophin is an abundant protein in dissociative extracts of bovine fetal epiphyseal cartilage and nasal cartilage from newborns , 1993, Journal of orthopaedic research : official publication of the Orthopaedic Research Society.
[75] M. Tamura,et al. Pleiotrophin regulates bone morphogenetic protein (BMP)-induced ectopic osteogenesis. , 2002, Journal of biochemistry.