In vitro assays with endothelial cells (EC) cultured on three-dimensional gel recapitulate several aspects of vascular morphogenesis and pathological angiogenesis. The two most used in vitro assays of vascular morphogenesis are the tube formation on extracellular matrix gel and the sprouting from EC spheroids. Tube formation assay measures the ability of EC, plated on gel derived from reconstituted basement membrane, to form capillary-like structures. Sprouting assay is based on spheroids of EC, embedded in collagen gel and stimulated with angiogenic factors, which originate a complex network of capillary-like structures invading the gel. Both these assays can be exploited for antiangiogenic drug screening and gene function analysis during vascular morphogenesis.

Three-dimensional in vitro assay of endothelial cell invasion and capillary tube morphogenesis

DI BLASIO, LAURA;BUSSOLINO, Federico;PRIMO, Luca
2015-01-01

Abstract

In vitro assays with endothelial cells (EC) cultured on three-dimensional gel recapitulate several aspects of vascular morphogenesis and pathological angiogenesis. The two most used in vitro assays of vascular morphogenesis are the tube formation on extracellular matrix gel and the sprouting from EC spheroids. Tube formation assay measures the ability of EC, plated on gel derived from reconstituted basement membrane, to form capillary-like structures. Sprouting assay is based on spheroids of EC, embedded in collagen gel and stimulated with angiogenic factors, which originate a complex network of capillary-like structures invading the gel. Both these assays can be exploited for antiangiogenic drug screening and gene function analysis during vascular morphogenesis.
2015
Vascular Morphogenesis
Humana Press Inc.
Methods in Molecular Biology
1214
41
47
978-1-4939-1461-6
978-1-4939-1462-3
978-1-4939-1461-6
978-1-4939-1462-3
http://www.springer.com/series/7651
Basement membrane extract (Matrigel); Capillarylike structures; Collagen type-I; HUVEC; Spheroids; VEGF-A; Capillaries; Cytological Techniques; Extracellular Matrix; Human Umbilical Vein Endothelial Cells; Humans; Neovascularization, Physiologic; Spheroids, Cellular; Morphogenesis; Molecular Biology; Genetics
Di Blasio, Laura; Bussolino, Federico; Primo, Luca
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/1528421
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