model of human skeletal muscle VEGFR-2, and neuropilin in vivo: a computational Interactions of VEGF isoforms with VEGFR-1,
暂无分享,去创建一个
[1] L. Nifong,et al. Angiogenic growth factor response to acute systemic exercise in human skeletal muscle. , 2004, Journal of applied physiology.
[2] Bente Kiens,et al. Muscular long-chain fatty acid content during graded exercise in humans. , 1999, American journal of physiology. Endocrinology and metabolism.
[3] Aleksander S Popel,et al. Monte Carlo simulations of VEGF binding to cell surface receptors in vitro. , 2005, Biochimica et biophysica acta.
[4] Brian H Annex,et al. Claudication of Vascular Endothelial Growth Factor 121 in Patients With Disabling Intermittent Disease : A Phase II Randomized , Double-Blind , Controlled Study of Adenoviral Delivery Regional Angiogenesis With Vascular Endothelial Growth Factor in Peripheral Arterial , 2003 .
[5] G Sjøgaard,et al. Extra- and intracellular water spaces in muscles of man at rest and with dynamic exercise. , 1982, The American journal of physiology.
[6] T. Rosengart,et al. Vascular endothelial growth factor is the major angiogenic factor in omentum: mechanism of the omentum-mediated angiogenesis. , 1997, The Journal of surgical research.
[7] D. Mukhopadhyay,et al. Myogenic Akt Signaling Regulates Blood Vessel Recruitment during Myofiber Growth , 2002, Molecular and Cellular Biology.
[8] A. Popel,et al. Model of competitive binding of vascular endothelial growth factor and placental growth factor to VEGF receptors on endothelial cells. , 2004, American journal of physiology. Heart and circulatory physiology.
[9] Maria Chosia,et al. Angiogenesis and some prognostic parameters of invasive ductal breast carcinoma in women. , 2002, Polish journal of pathology : official journal of the Polish Society of Pathologists.
[10] L. Claesson‐Welsh,et al. VEGF receptor signalling ? in control of vascular function , 2006, Nature Reviews Molecular Cell Biology.
[11] M. Mohammadi,et al. A Single Amino Acid Substitution in the Activation Loop Defines the Decoy Characteristic of VEGFR-1/FLT-1* , 2006, Journal of Biological Chemistry.
[12] C. Dabrosin. Variability of vascular endothelial growth factor in normal human breast tissue in vivo during the menstrual cycle. , 2003, The Journal of clinical endocrinology and metabolism.
[13] Aleksander S. Popel,et al. A Reaction-Diffusion Model of Basic Fibroblast Growth Factor Interactions with Cell Surface Receptors , 2004, Annals of Biomedical Engineering.
[14] T. Secomb,et al. Estimation of capillary density in human skeletal muscle based on maximal oxygen consumption rates. , 2003, American journal of physiology. Heart and circulatory physiology.
[15] M. Sunday,et al. Differential expression of VEGF isoforms in mouse during development and in the adult , 2001, Developmental dynamics : an official publication of the American Association of Anatomists.
[16] L. Westerkamp,et al. Lower capillary density but no difference in VEGF expression in obese vs. lean young skeletal muscle in humans. , 2005, Journal of applied physiology.
[17] W. Dong,et al. Role of VEGF and CD44v6 in differentiating benign from malignant ascites. , 2003, World journal of gastroenterology.
[18] G. Breier,et al. The Vascular Endothelial Growth Factor Receptor Flt-1 Mediates Biological Activities , 1996, The Journal of Biological Chemistry.
[19] L. Westerkamp,et al. Lower skeletal muscle capillarization and VEGF expression in aged vs. young men. , 2006, Journal of applied physiology.
[20] V R Edgerton,et al. Myonuclear domain and myosin phenotype in human soleus after bed rest with or without loading. , 1999, Journal of applied physiology.
[21] Lena Claesson-Welsh,et al. Signal transduction by VEGF receptors in regulation of angiogenesis and lymphangiogenesis. , 2006, Experimental cell research.
[22] L Claesson-Welsh,et al. Signaling properties of VEGF receptor-1 and -2 homo- and heterodimers. , 2001, The international journal of biochemistry & cell biology.
[23] R. Staron,et al. Effects of high-intensity resistance training on untrained older men. II. Muscle fiber characteristics and nucleo-cytoplasmic relationships. , 2000, The journals of gerontology. Series A, Biological sciences and medical sciences.
[24] José Magalhães,et al. Skeletal muscle ultrastructural and plasma biochemical signs of endothelium dysfunction induced by a high-altitude expedition (Pumori, 7161m) , 2005 .
[25] Shay Soker,et al. VEGF165 mediates formation of complexes containing VEGFR‐2 and neuropilin‐1 that enhance VEGF165‐receptor binding , 2002, Journal of cellular biochemistry.
[26] N Hernández,et al. Capillary changes in skeletal muscle of patients with essential hypertension , 1999, The Anatomical record.
[27] D. Hostler,et al. Fiber Type Composition of the Vastus Lateralis Muscle of Young Men and Women , 2000 .
[28] H. Haider,et al. Therapeutic Angiogenesis for Treatment of Peripheral Vascular Disease , 2004, Growth factors.
[29] N. Rahimi,et al. Receptor Chimeras Indicate That the Vascular Endothelial Growth Factor Receptor-1 (VEGFR-1) Modulates Mitogenic Activity of VEGFR-2 in Endothelial Cells* , 2000, The Journal of Biological Chemistry.
[30] V. Edgerton,et al. Myonuclear domains in muscle adaptation and disease , 1999, Muscle & nerve.
[31] D. Mukhopadhyay,et al. Vascular Permeability Factor (VPF)/Vascular Endothelial Growth Factor (VEGF) Receptor-1 Down-modulates VPF/VEGF Receptor-2-mediated Endothelial Cell Proliferation, but Not Migration, through Phosphatidylinositol 3-Kinase-dependent Pathways* , 2001, The Journal of Biological Chemistry.
[32] Shay Soker,et al. Neuropilin-1 Is Expressed by Endothelial and Tumor Cells as an Isoform-Specific Receptor for Vascular Endothelial Growth Factor , 1998, Cell.
[33] Henning Langberg,et al. Exercise but not Prostanoids Enhance Levels of Vascular Endothelial Growth Factor and other Proliferative Agents in Human Skeletal Muscle Interstitium , 2003, The Journal of physiology.
[34] A. Keys,et al. Density and composition of mammalian muscle , 1960 .
[35] Christoph Dehio,et al. Role of PlGF in the intra- and intermolecular cross talk between the VEGF receptors Flt1 and Flk1 , 2003, Nature Medicine.
[36] T. P. White,et al. Architecture, composition, and contractile properties of rat soleus muscle grafts. , 1986, The American journal of physiology.
[37] Aleksander S Popel,et al. Differential binding of VEGF isoforms to VEGF receptor 2 in the presence of neuropilin-1: a computational model. , 2005, American journal of physiology. Heart and circulatory physiology.
[38] L. Westerkamp,et al. Lower capillarization, VEGF protein, and VEGF mRNA response to acute exercise in the vastus lateralis muscle of aged vs. young women. , 2005, Journal of applied physiology.
[39] Maria Chosia,et al. Angiogenesis as determined by computerised image analysis and the risk of early relapse in women with invasive ductal breast carcinoma. , 2003, Polish journal of pathology : official journal of the Polish Society of Pathologists.
[40] Gordon B. Mills,et al. Markedly Elevated Levels of Vascular Endothelial Growth Factor in Malignant Ascites , 1999, Annals of Surgical Oncology.
[41] L. Thornell,et al. Differences in capillary supply between human oro-facial, masticatory and limb muscles , 1996, Journal of Muscle Research & Cell Motility.
[42] U. Ikeda,et al. AAV-mediated VEGF gene transfer into skeletal muscle stimulates angiogenesis and improves blood flow in a rat hindlimb ischemia model. , 2002, Cardiovascular research.
[43] M. Sirois,et al. Vascular Endothelial Growth Factor (VEGF)-A165-induced Prostacyclin Synthesis Requires the Activation of VEGF Receptor-1 and -2 Heterodimer* , 2005, Journal of Biological Chemistry.
[44] B. Saltin,et al. Malleability of the system in overcoming limitations: functional elements. , 1985, The Journal of experimental biology.
[45] K Shoemaker,et al. Serial effects of high-resistance and prolonged endurance training on Na+-K+ pump concentration and enzymatic activities in human vastus lateralis. , 1999, Acta physiologica Scandinavica.