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Informationen zum Autor Domenico Ribatti was awarded his M.D. degree in October 1981, with full marks. In 1983, D.R. joined the Medical School as Assistant at the Institute of Human Anatomy, University of Bari. In 1984, he took the specialization in Allergology. In 1989, he spent one year in Geneva, working at the Department of Morphology (Prof. R. Montesano). In 2008, he received the honoris causa degree in Medicine and Pharmacy form the University of Timisoara (Romania). D.R. is author of 866 publications as reported in PUBmed and contributed to 50 chapters to books. Overall, his papers have been cited 51153 times. He has published many books with both Elsevier and Springe Klappentext In Vivo Models to Study Angiogenesis provides the latest information and an overview of the most common assays for studying angiogenesis in vivo. Under physiological conditions, angiogenesis is tightly controlled, whereas increased production of angiogenic stimuli and/or reduced production of angiogenic inhibitors leads to abnormal neovascularization, such as occurs in cancer, chronic inflammatory disease, diabetic retinopathy, macular degeneration and cardiovascular disorders. Several genetic and epigenetic mechanisms are involved in the early development of the vascular system. This book presents the latest information from the extensive literature and research available. Evidence is now emerging that blood vessels themselves have the ability to provide instructive regulatory signals to surrounding non-vascular target cells during organ development. Thus, endothelial cell signaling is currently believed to promote fundamental cues for cell fate specification, embryo patterning, organ differentiation and postnatal tissue remodeling. Inhaltsverzeichnis The chorioallantoic membrane The corneal micropocket assay The zebrafish embryo The sponge implant method The Matrigen implant assay In vivo gene transfer with AAV vectors In vivo tumor models...
Klappentext
In Vivo Models to Study Angiogenesis provides the latest information and an overview of the most common assays for studying angiogenesis in vivo. Under physiological conditions, angiogenesis is tightly controlled, whereas increased production of angiogenic stimuli and/or reduced production of angiogenic inhibitors leads to abnormal neovascularization, such as occurs in cancer, chronic inflammatory disease, diabetic retinopathy, macular degeneration and cardiovascular disorders. Several genetic and epigenetic mechanisms are involved in the early development of the vascular system. This book presents the latest information from the extensive literature and research available.
Evidence is now emerging that blood vessels themselves have the ability to provide instructive regulatory signals to surrounding non-vascular target cells during organ development. Thus, endothelial cell signaling is currently believed to promote fundamental cues for cell fate specification, embryo patterning, organ differentiation and postnatal tissue remodeling.
Inhalt
The chorioallantoic membrane
The corneal micropocket assay
The zebrafish embryo
The sponge implant method
The Matrigen implant assay
In vivo gene transfer with AAV vectors
In vivo tumor models