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ILEX LIFE SCIENCES LLC GELACELL PLLA IN 24-WELL PLATE
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Catalog No. 502733917
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Gelacell - PLLA scaffolds in 24-well plate for 3D cell culture (1 plate). INTRO: Gelacell, manufactured by Gelatex Technologies, is a unique, 3D microfibrous scaffold engineered for advanced in vitro 3D cell culture and tissue engineering applications. Designed as a non-woven, highly porous scaffold, Gelacell offers exceptional biocompatibility and non-toxicity across a variety of cell types. DESCRIPTION: The flagship product of Gelatex Technologies is a 24-well plate containing circular scaffolds made from pharmaceutical grade poly-L-lactide (PLLA) that are fixed to PET discs. This format offers a straightforward visual imaging of cells directly from the well plate. Ideal for cultivation of complex systems like organoids, cell microenvironments, and tissue regeneration. The optimized design ensures thermal, chemical, and mechanical stability, while providing substantial swelling capabilities and porosity for efficient nutrient diffusion and cellular waste build up prevention.

Catalog No. 50-273-3917 Supplier ILEX LIFE SCIENCES LLC Supplier No. GC0805RNWP24A
May include imposed supplier surcharges.
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Gelacell - PLLA scaffolds in 24-well plate for 3D cell culture (1 plate). INTRO: Gelacell, manufactured by Gelatex Technologies, is a unique, 3D microfibrous scaffold engineered for advanced in vitro 3D cell culture and tissue engineering applications. Designed as a non-woven, highly porous scaffold, Gelacell offers exceptional biocompatibility and non-toxicity across a variety of cell types. DESCRIPTION: The flagship product of Gelatex Technologies is a 24-well plate containing circular scaffolds made from pharmaceutical grade poly-L-lactide (PLLA) that are fixed to PET discs. This format offers a straightforward visual imaging of cells directly from the well plate. Ideal for cultivation of complex systems like organoids, cell microenvironments, and tissue regeneration. The optimized design ensures thermal, chemical, and mechanical stability, while providing substantial swelling capabilities and porosity for efficient nutrient diffusion and cellular waste build up prevention.

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