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The Multiplatform Utility of Human iPSC-Derived Neuronal Models to Provide Complex Biological In Vitro Systems for Drug Discovery

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The poster The Multiplatform Utility of Human iPSC-Derived Neuronal Models to Provide Complex Biological In Vitro Systems for Drug Discovery presents Axol Bioscience’s approach to building advanced neuronal models using human iPSC-derived cell types across multiple microphysiological platforms.

Key highlights include:

  • Platforms Used:
    • 2D MEA – NETRI Neurofluidics™ DuaLink with Axion Maestro Pro
    • 3D MEA – Axion Maestro Pro with bioprinted scaffold
    • 2D Microfluidics – Xona Microfluidics® system
  • Functional Assays:
    • MEA recordings of motor and sensory neurons
    • NMJ co-culture models with skeletal muscle
    • ALS motor neurons (C9orf72) show hyperexcitability and increased contraction frequency
  • Matrix Optimization:
    • Sensory neurons: PDL + SureBond XF, PLO + SureBond XF
    • Motor neurons: Vitronectin + SureBond XF, PLO + SureBond XF
  • Markers Validated:
    • Sensory neurons: β3 Tubulin, Nav1.7, Nav1.8, VR1
    • Motor neurons: β3 Tubulin, HB9, ChAT, ISL-1
    • NMJ: NeuN (motor neurons), α-Bungarotoxin (synapse), Titin (muscle)
  • Surface Chemistry & Compatibility:
    • PDMS treatments (UV, PVA) improve fluid dynamics and cell distribution
    • Scaffold-based 3D NMJ model enables motor neuron-driven muscle contraction

This multiplatform strategy supports scalable, human-relevant models for neurodegeneration, pain, and ALS research.

Featured Axol Products:

  • axoCells™ Motor Neurons – ALS (C9orf72) – ax0074
  • axoCells™ Motor Neurons – Healthy Donor – ax0076
  • axoCells™ Sensory Neuron Kits – ax0055, ax0555, ax0157
  • axoCells™ Co-Culture Media & Supplements