Making in vitro 3D Angiogenesis a Reality

Infographic: Making In Vitro 3D Angiogenesis a RealityThis infographic provides a concise overview of how to model physiologically relevant 3D angiogenesis using the OrganoPlate® platform. It illustrates the step-by-step process of establishing perfusable microvessels and inducing angiogenic sprouting within a controlled microfluidic environment.Key Highlights:Microfluidic Design: Microfluidic Design: Shows how the 3-lane OrganoPlate setup enables precise patterning of extracellular matrix (ECM) and creation of a parent vessel adjacent to the ECMAngiogenic Sprouting: Demonstrates the induction of angiogenic sprouts from the parent vessel into the ECM gel in response to biochemical gradients, mimicking in vivo conditions.Quantitative Analysis: Highlights methods for assessing sprout formation, including imaging techniques and quantification of sprout length and number.Applications: Suitable for studying angiogenesis-related processes in drug discovery, cancer research, and vascular biology.
Making in vitro 3D Angiogenesis a Reality

Making in vitro 3D Angiogenesis a Reality
Visual guide to modeling 3D angiogenesis in vitro using the OrganoPlate® platform

Making in vitro 3D Angiogenesis a Reality
Visual guide to modeling 3D angiogenesis in vitro using the OrganoPlate® platform

Making in vitro 3D Angiogenesis a Reality
Visual guide to modeling 3D angiogenesis in vitro using the OrganoPlate® platform

Making in vitro 3D Angiogenesis a Reality
Visual guide to modeling 3D angiogenesis in vitro using the OrganoPlate® platform

Making in vitro 3D Angiogenesis a Reality
Visual guide to modeling 3D angiogenesis in vitro using the OrganoPlate® platform

Making in vitro 3D Angiogenesis a Reality
Visual guide to modeling 3D angiogenesis in vitro using the OrganoPlate® platform

Making in vitro 3D Angiogenesis a Reality
Visual guide to modeling 3D angiogenesis in vitro using the OrganoPlate® platform

Making in vitro 3D Angiogenesis a Reality
Visual guide to modeling 3D angiogenesis in vitro using the OrganoPlate® platform
