Phenotypic 3D cell models – Benefits and how to get started

28 Aug 2024

Phenotypic 3D cell models recapitulate the complexity of the tissue microenvironment by incorporating tissue architectures and extracellular matrices that have in vivo relevance. Matrix-embedded 3D cell models provide an optimal balance of complexity and scalability that makes them ideal for drug screening applications. Inventia Life Science outlines how scalable matrix-embedded 3D cell models can replicate the complexity of the in vivo context and easily integrate with existing downstream analysis methods for drug discovery.

RASTRUM™

Inventia

RASTRUM™ is a 3D cell culture platform that enables scientists to generate biologically and phenotypically relevant models for disease research, drug discovery, and translational applications with greater efficiency and consistency.

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Cell / Tissue CultureCell culture or tissue culture is used to study the biology of cells or tissues and to isolate cellular products in an environment which can be manipulated and well defined. Accurately control your culture environment with bioreactors or culture incubators, bind your cells to a surface or together with an extracellular matrix. Distinguish cell types with differential media or proliferate cells with certain characteristics using selective media. Enrich your media with supplements such as growth factors, sera and vitamins. Find the best cell and tissue culture products, kits and equipment in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.In VivoPhenotypic ScreeningPhenotypic screening assesses cellular responses to compounds, enabling drug discovery and target identification. This technique is pivotal in finding effective treatments for complex diseases. Discover phenotypic screening platforms and tools with peer-reviewed comparisons and pricing in our directory.Matrix
Phenotypic 3D cell models - Benefits and how to get started