Home platform cell model architectures

The easy solution for creating 3D cell models.

RASTRUM™ advanced 3D cell models provide in vitro researchers with physiologically relevant cell models for next generation drug discovery and phenotypic research.

Create complex spatial cell and matrix configuration that seamlessly integrate with your downstream workflows to reliably model complex biology, discovery new therapeutic targets, and screen drug compounds.

Small single matrix@2x-100

Imaging Model

A thin, single matrix model designed for fast imaging and reduced cell usage

  • Immunofluoroscence imaging
  • Drug screening
  • Biochemical assays
  • Thin model for fast, high-content imaging
  • Compact model reducing number of cells required
Large single matrix@2x-100

Large Plug Model

A single matrix model designed for expansion and bulk downstream analyses.

  • DNA, RNA and protein analysis
  • Flow cytometry
  • Omics analyses
  • Large model for more cellular material
High-throughput@2x-100

High-Throughput Model

A single matrix model designed for high-throughput in 384-well plates.

  • Drug screening
  • High-content imaging
  • Biochemical assays
  • Consistent and reproducible 3D models in 384-well plate format
Triple matrix@2x-100

Triple Matrix Model

A triple matrix model designed for recapitulating tissue architecture.

  • Migration and invasion
  • Tissue architecture recapitulation
  • Cell signaling and interaction
  • Easy to image cell signaling and interaction
  • 3D models with defined tissue architecture
Double matrix@2x-100

Double Matrix Model

A double matrix model designed for recapitulating tissue architecture.

  • Migration and invasion
  • Tissue architecture recapitulation
  • Cell signalling and interaction
  • Easy to image cell signalling and interaction
  • 3D models with defined tissue architecture
Removable@2x-100

Removable Model

A large removable model for 24-well plates printed on coverslips designed for implantation.

  • Implantation
  • Immunohistochemistry
  • Spatial biology
  • Easy to remove for microscopic imaging
  • Easy to handle for embedding and sectioning