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3D Cell Culture Matrix Duo-Matrix Kit

Catalog #: K519

Product Details

Cat # +Size K519-100
Size 100 assays
Detection Method Qualitative
Species Reactivity Mammalian
Applications Spheroid Formation Assays
Features & Benefits Reproducible, Qualitative tool for screening, studying, and characterizing compounds in cell culture studies
Kit Components • Duo-Matrix
• Cross-linking Solution
• Wash Buffer
Storage Conditions -20°C
Shipping Conditions Gel Pack
USAGE For Research Use Only! Not For Use in Humans.


Three dimensional (3D) cell cultures are artificially-created environments in which cells are permitted to grow or interact with their surroundings in a 3D fashion. 3D cell cultures improve the function, differentiation and viability of cells and recapitulate in vivo microenvironment compared to conventional 2D cell cultures. 3D matrices provide a physiologically relevant screening platform, by mimicking the in vivo responses, for many cell types including cancer and stem cells in developmental morphogenesis, pharmacology, drug metabolism and drug toxicity studies. BioVision offers 3D cell culture matrices, including Basement Membrane Matrix (animal-based), Alginate Hydrogel (plant-based) and proprietary Biovision’s Duo-Matrix Mix, to meet the needs and requirements of various research fields. BioVision’s 3D Culture Matrix Kits provide a standardized, yet user friendly and adaptable to high-throughput strategy for setting up spheroid formations, 3D cell cultures and pharmacological studies.

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BioVision aims to provide our customers innovative tools for accelerating drug discovery and biological research. BioVision offers >8,000 products including the most comprehensive array of assay kits for key targets in Metabolic pathways.
BioVision is committed to providing the highest quality products at a competitive price.
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Our highly trained Technical Support team provides comprehensive product support and is dedicated to resolving your issues quickly and efficiently.
How did you determine the integrity of the matrix? Did you determine the tensile strength for each type of matrix?
No, we did not determine the tensile strength for each type of matrices. When we develop the kit, we optimized the experimental conditions (temperature, incubation time, treatment and several types and concentration/percentage of the matrix etc.) to confirm the type of the matrix compatible with the assay.