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Capillary Network Formation in HUVEC–Pericyte Co-cultures with LunaX™ ECM

Updated July 2026

Summary

This application note demonstrates how LunaX™ ECM, tuned to a physiologically relevant stiffness of 1.5 kPa, supports the development of stable capillary-like networks in HUVEC–pericyte co-cultures. Over seven days, LunaX ECM produced more organised and interconnected vascular structures than Matrigel under the tested conditions.

What you’ll learn

  • How to establish a 3D HUVEC–pericyte co-culture model for studying angiogenesis.
  • Why physiologically relevant matrix stiffness is important for endothelial network formation.
  • How vascular networks develop in LunaX ECM over a seven-day culture period.
  • How LunaX ECM and Matrigel compared using CD31, actin and DAPI confocal imaging.
  • How this model can support anti-angiogenic drug screening, vascularised tissue research and extracellular-vesicle analysis.

Key findings

  • LunaX ECM supported early endothelial network formation by Day 3, followed by progressive branching and increased interconnectivity.
  • By Day 7, co-cultures in LunaX ECM formed well-branched, interconnected capillary-like networks with organised cytoskeletal architecture.
  • Matrigel cultures produced comparatively sparse and irregular structures, with inconsistent branching across the seven-day experiment.
  • The 1.5 kPa LunaX matrix provided a mechanically defined environment within the physiological stiffness range of capillary-associated tissue.
  • LunaX ECM’s defined, growth-factor-free composition provides a reproducible baseline for mechanistic angiogenesis studies and drug-response testing.

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