Sprouting Angiogenesis

Sprouting angiogenesis is the formation of new blood vessels from existing ones, a process essential for tissue growth, repair, and adaptation to changing oxygen demands. It begins when hypoxic tissue releases vascular endothelial growth factor (VEGF), activating endothelial cells to degrade the basement membrane, migrate toward the signal, and organize into branching tubes; specialized tip and stalk cells coordinate guidance and proliferation. In biology and biomedical research, studying sprouting angiogenesis helps explain wound healing, embryonic development, tumor vascularization, and vascular disease. Experimental models also support evaluation of therapies that promote or inhibit blood-vessel growth.

Sprouting Angiogenesis - Related Videos

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JoVE EoE - Assay Techniques

Bead Sprouting Assay for Early-Stage Angiogenesis Assessment: An In Vitro Bead-Based Model to Study Endothelial Sprouting in the Presence of Pericytes

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2025

This video demonstrates a modified microcarrier beads-based assay incorporating pericytes to study endothelial sprouting during the early stages of angiogenesis. The assay provides an in vitro experimental model to understand molecular mechanisms of angiogenesis and the effect of anti-angiogenetic therapeutics.

An Ex Vivo Choroid Sprouting Assay of Ocular Microvascular Angiogenesis

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Cited by 16 •

2020

This protocol presents choroid sprouting assay, an ex vivo model of microvascular proliferation. This assay can be used to assess pathways involved in proliferating choroidal micro vessels and assess drug treatments using wild type and genetically modified mouse tissue.

Research

JoVE Journal - Biology
Free Sample

Rat Mesentery Angiogenesis Assay

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Cited by 9 •

2011

Normal adult vascularized mammalian tissue that lacks physiologic angiogenesis and that has not been exposed to surgical intervention is used to study: (i) the initiation and development of angiogenesis following intraperitoneal administration of test agents; and (ii) modification of angiogenesis following systemic administration of selected test agents.

Christopher Hughes: An in vitro model for the Study of Angiogenesis (Interview)

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Cited by 1 •

2007

Christopher C.W. Hughes describes the utility of his culture system for studying angiogenesis in vitro. He explains the importance of fibroblasts that secrete a critical, yet unidentified, soluble factor that allow endothelial cells to form vessels in culture that branch, form proper lumens, and undergo anastamosis.

Research

JoVE Journal - Biology
Free Sample

2.5D Model for Ex Vivo Mechanical Characterization of Sprouting Angiogenesis in Living Tissue

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2025

Sprouting angiogenesis, fundamental for development and disease, involves complex molecular and mechanical processes. We present a versatile 2.5D ex vivo model that analyzes cellular sprouting from porcine carotid arteries, revealing stiffness-dependent angiogenesis and distinct leader-follower cell mechanics. This model aids in advancing tissue engineering strategies and cancer therapy approaches.

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