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Table of Contents
Chapter 1: Fibronectin Fibrillogenesis during Angiogenesis
Chapter 2: Functional Interplay Between Fibronectin and Matricellular Proteins in the Control of Endothelial Tubulogenesis
Chapter 3: Endothelial Cell-Matrix Interactions in Angiogenesis and Vessel Homeostasis: A Focus on Laminins and Their Integrin Receptors
Chapter 4: Collagens and collagen-degrading enzymes in the regulation of angiogenesis
Chapter 5: Kruppel-like factor 2 and matrix metalloproteinases in the context of vasculature
Chapter 6: Extracellular Matrix-Remodeling Enzymes as Targets for Natural Antiangiogenic Compounds
Chapter 7: Cell - extracellular matrix adhesions in vascular endothelium
Chapter 8: Hypoxia: a potent regulator of angiogenesis through extracellular matrix remodeling
Chapter 9: Leading roles of heparan sulfate in angiogenesis and cancer
Chapter 10: The role of pericytes in tumor angiogenesis
Chapter 11: Lymphatic Mechanoregulation in Development and Disease.
Chapter 2: Functional Interplay Between Fibronectin and Matricellular Proteins in the Control of Endothelial Tubulogenesis
Chapter 3: Endothelial Cell-Matrix Interactions in Angiogenesis and Vessel Homeostasis: A Focus on Laminins and Their Integrin Receptors
Chapter 4: Collagens and collagen-degrading enzymes in the regulation of angiogenesis
Chapter 5: Kruppel-like factor 2 and matrix metalloproteinases in the context of vasculature
Chapter 6: Extracellular Matrix-Remodeling Enzymes as Targets for Natural Antiangiogenic Compounds
Chapter 7: Cell - extracellular matrix adhesions in vascular endothelium
Chapter 8: Hypoxia: a potent regulator of angiogenesis through extracellular matrix remodeling
Chapter 9: Leading roles of heparan sulfate in angiogenesis and cancer
Chapter 10: The role of pericytes in tumor angiogenesis
Chapter 11: Lymphatic Mechanoregulation in Development and Disease.