JoVE Logo

Sign In

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

188 Views

10:00 min

February 28th, 2025

DOI :

10.3791/67641-v

February 28th, 2025


Explore More Videos

2 5D Model

Chapters in this video

0:00

Introduction

1:08

Preparation and Functionalization of 2D Polyacrylamide Substrates for Porcine Carotid Artery Culture

3:01

Porcine Carotid Artery Dissection and Preparation of Artery Rings for Ex Vivo Culture

4:04

Tissue Seeding and Creation of a 2.5D Arterial Model on Polyacrylamide Substrates

6:49

Live Cell Imaging and Traction Force Microscopy Analysis in a 2.5D Arterial Model

Related Videos

article

10:29

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

8.5K Views

article

14:14

Optimized Fibrin Gel Bead Assay for the Study of Angiogenesis

31.6K Views

article

11:36

Ex vivo Mechanical Loading of Tendon

9.6K Views

article

06:54

An Ex Vivo Method for Time-Lapse Imaging of Cultured Rat Mesenteric Microvascular Networks

6.8K Views

article

06:36

An In Vitro 3D Model and Computational Pipeline to Quantify the Vasculogenic Potential of iPSC-Derived Endothelial Progenitors

6.0K Views

article

08:53

The Arteriovenous (AV) Loop in a Small Animal Model to Study Angiogenesis and Vascularized Tissue Engineering

12.5K Views

article

10:47

Standardized and Scalable Assay to Study Perfused 3D Angiogenic Sprouting of iPSC-derived Endothelial Cells In Vitro

30.4K Views

article

10:01

Microfluidic Model to Mimic Initial Event of Neovascularization

4.5K Views

article

09:16

Investigating Angiogenesis on a Functional and Molecular Level by Leveraging the Scratch Wound Migration Assay and the Spheroid Sprouting Assay

1.1K Views

article

08:04

In Vitro Three-Dimensional Sprouting Assay of Angiogenesis Using Mouse Embryonic Stem Cells for Vascular Disease Modeling and Drug Testing

2.7K Views

JoVE Logo

Privacy

Terms of Use

Policies

Research

Education

ABOUT JoVE

Copyright © 2025 MyJoVE Corporation. All rights reserved