LunaX™ TissueMatrix is a tunable ECM tailored for 3D spheroid and co-culture models of mesodermal origin, including stromal and endothelial cell types. Suitable for applications in oncology, vasculogenesis, and drug screening, it offers high reproducibility and intuitive handling - ideal for both expert users and researchers transitioning from 2D to 3D systems. LunaX™ tunable hydrogels are engineered to enable precise modulation of ECM stiffness while preserving cellular viability and function. Crosslinking is driven by a photoinitiator that undergoes activation upon exposure to cytocompatible blue visible light (λ = 405nm), initiating a controlled polymerisation reaction. Stiffness can be incrementally increased by extending the duration of light exposure, allowing fine-tuned adjustment of the mechanical microenvironment. This approach facilitates the generation of physiologically relevant 3D models that recapitulate tissue-specific or disease-associated ECM mechanics, including progressive stiffening observed in tumorigenesis and fibrosis.
- Ready-to-use format
- Precise mechanical control - photocrosslinking technology enables tunable stiffness for optimized 3D cell culture conditions.
- High bioactivity - supports cell attachment, proliferation, and proteolytic degradation, promoting physiologically relevant cell behaviour
- Optically transparent for imaging - forms optically clear hydrogels that remain stable at room temperature, ensuring seamless integration with standard imaging systems and bioassays.
- Reliable and reproducible ECM for 3D cell culture
- Each kit contains everything you need for precise, tunable 3D cell culture: 5mL LunaX ECM solution supplied as a sterile 1.5x stock solution in PBS, plus 5 vials of sterile lyophilised photoinitiator
This product has met the following criteria to qualify for the following awards:
 | Sustainable Distribution & Packaging | - Country of origin has an Environmental Performance Index (EPI) greater than 60
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To find out more about our Sustainability Attributes, click here.