Application notes

APN-005

ECM Stiffness Regulates Iron Homeostasis in 3D Liver Spheroids

Summary

This application note demonstrates how ECM stiffness regulates hepatic iron biology in C3A liver spheroids. Compared with 2D culture and Matrigel®, LunaX™ ECM supported more uniform spheroids and stiffness-dependent increases in TFR1, TFR2 and MT2 expression across 0.5–4 kPa conditions.

What you’ll learn

  • How to establish C3A hepatic spheroids across 0.5, 2 and 4 kPa LunaX ECM conditions.
  • How this stiffness range models the mechanical transition from healthy liver parenchyma to early fibrotic tissue.
  • How ECM stiffness affects hepatic spheroid formation, regularity and uniformity over six days.
  • How TFR1, TFR2 and MT2 expression changes between 2D monolayers, Matrigel and tunable 3D ECM.
  • How a mechanically defined liver model can support research into iron overload, haemochromatosis, MASLD and liver fibrosis.

Key findings

  • C3A cells formed well-defined spherical aggregates in LunaX, while 2D cultures remained flat and Matrigel produced loose, irregular aggregates.
  • Spheroid regularity and uniformity increased with LunaX ECM stiffness, with the most consistent morphology observed at 4 kPa.
  • TFR1 expression increased progressively across 0.5–4 kPa LunaX conditions and was highest at 4 kPa.
  • TFR2 and MT2 were substantially upregulated in LunaX compared with 2D and Matrigel, with the strongest responses at higher stiffness.
  • The coordinated stiffness-dependent response of TFR1, TFR2 and MT2 was absent or markedly attenuated in conventional 2D and non-tunable Matrigel conditions.

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