You searched for: Cell Culture Plates
Regardless of the biological cell type, cell culture plates create required conditions and environments ideal for optimum growth. Optically clear for maximum visual assaying capability, the dishes are available in round, flat, or v shaped bottom styles. Different treatment options support specific surface modifications for cell attachment or suspension. Lids securely protect samples placed in the multiple well plates during screening, experiments, and storage. Using any size cell culture plate yields consistent and reproducible results.
ECM mimetic cultureware plates, Corning® PureCoat™
Supplier: Corning
Corning ECM mimetic surfaces and substrates contain biologically active, synthetic, animal-free peptides that have been rationally designed to mimic the cell attachment motifs of native ECM proteins. The peptides enable optimal cell binding and signaling in a broad range of serum-free, xeno-free, and animal-free media formulations, supporting the propagation and differentiation of a range of stem, progenitor and primary cell types.
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Laminin cell culture plates, Corning® BioCoat™
Supplier: Corning
PS, coated with mouse laminin. Laminin, a major structural component of basement membranes, has many varied functions that are mediated by binding to various components of the basement membrane (for example, collagen IV) and to cell-surface receptors. Laminin-coated cell culture plates have a number of applications, including the promotion of cell adhesion, proliferation and differentiation of a variety of cell types, particularly neurons, epithelial cells, myocytes and myoblasts.
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Protein coated cell culture plates, CELLCOAT®, Poly-lysine
Supplier: Greiner Bio-One
PS, coated with poly-lysine. Poly-D-Lysine (PDL) and Poly-L-Lysine (PLL) are synthetic molecules that are used to improve the adhesion of different cell types to polystyrene surfaces. The cultivation efficiency of individual cell lines can be improved, especially when serum-free or serum-reduced medium is used, or when experiments such as transfections are performed. As the PDL is synthetic it is free of the impurities carried by other proteins.
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96- and 384-well cell culture microplates, Advanced TC™
Supplier: Greiner Bio-One
Microplates with a modified culture surface to optimise cell characteristics and functions. The improved adherence and increased growth rate improve and accelerate cell proliferation. Additionally, the Advanced TC™ surface facilitates uniform and consistent cell adherence, increases throughput and reduces cell loss, for example during automated washing stages. Free of detectable DNase, RNase and human DNA.
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Fibronectin-coated plates, Corning® BioCoat®
Supplier: Corning
Human Fibronectin (HFN) is a widely distributed glycoprotein that is used as a substrate to promote attachment of cells through its central-binding domain RGD sequence. HFN is a product of most mesenchymal and epithelial cells and is present in both the ECM and plasma. The principal function of HFN appears to be in cellular migration during wound healing and development, regulation of cell growth and differentiation, and haemostasis/thrombosis.
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Poly-L-lysine-coated microplates, Corning® BioCoat®
Supplier: Corning
Poly-D-Lysine (PDL) and Poly-L-Lysine (PLL) are synthetic compounds that enhance cell adhesion and protein absorption by altering surface charges on the culture substrate. In addition to promoting cell adhesion, poly-lysine surface treatments support neurite outgrowth and improve the survival of many central nervous system (CNS) primary cells in culture. As PDL and PLL are synthetic molecules, they do not stimulate biological activity in the cells cultured on them, and they do not introduce impurities carried by natural polymers.
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Amine and carboxyl microplates, Corning® PureCoat™
Supplier: Corning
Corning PureCoat Amine (positively charged) and Carboxyl (negatively charged) surfaces provide improved cell attachment, faster cell proliferation, and enhanced recovery post-thaw over standard TC surfaces. These surfaces function with a broad range of primary, transfected, transformed, and fastidious cell types, and have demonstrated utility in serum-reduced or serum-free conditions.
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HTS Caco-2 assay system, PET membrane, BioCoat™, Corning
Supplier: Corning
HTS insert plates are arrays of individual cell culture inserts connected by a rigid, robotics-friendly holder. This single-unit design makes insert plates ideal for running automated, high throughput drug transport (Caco-2 cells) cell toxicity studies or cell migration and invasion studies.
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Collagen I-coated plates, Corning® BioCoat®
Supplier: Corning
PS coated with rat tail collagen type I. Collagen is an integral part of the framework that holds cells and tissues together and has been recognised as a useful matrix for improving cell culture. In vitro use of collagen can exert effects on the adhesion, morphology, growth, migration, and differentiation of a variety of cell types. Applications include promotion of cell attachment and spreading, rapid expansion of cell populations, serum-free or reduced serum culture, studies of the effects of collagen I on cell behaviour, improving survival of primary cell lines in culture, and cell adhesion assays.
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Multiwell cell culture plates, Falcon®
Supplier: Corning
Standard tissue culture (TC) and Corning® Primaria™ surface treatments is available. These plates are provided with various colours to suit various detection methods.
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Cell culture plates, 96-well, Corning®
Supplier: Corning
PS, clear, with lid.
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Multidishes, poly-D-lysine coated, Nunc™
Supplier: Thermo Fisher Scientific
PS, with lid. Useful in all areas of cell culture.
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96-Well cell culture plates, Falcon®
Supplier: Corning
Falcon® 96-well microplates are available in a variety of configurations and surface chemistries to meet a wide range of applications with fluorescence, luminescence, radiometric or colorimetric endpoints.
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96-Well clear polystyrene microplates, Corning®
Supplier: Corning
Cell culture microplates are sterile and nonpyrogenic. Lids available where indicated.
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Plates, collagen I coated, Nunc™
Supplier: Thermo Fisher Scientific
PS ready to use plates pre-coated with collagen I, with lid.
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96 MicroWell™ plates, Nunclon™∆
Supplier: Thermo Fisher Scientific
PS, high flange design, sterile. Ideal for cell culture, cloning, viral titrations and cell fusion.
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MiniTrays, Nunclon™Δ
Supplier: Thermo Fisher Scientific
PS, with lid, sterile.
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Matrigel® Matrix 3-D plates, Corning®
Supplier: Corning
The Corning® Matrigel® Matrix 3-D plate is a high throughput pre-coated format that contains Matrigel that can be used for drug discovery applications with 3-D cell cultures such as organoids, spheroids or tumoroids.
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Multicoated microplates
Supplier: Corning
The Corning® multicoated microplate provides users access to six different surface treatments on a single plate.
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Culture plates, Corning® Primaria™
Supplier: Corning
Unique nitrogen-containing tissue culture surface chemistry. Improves attachment, spreading, and growth for many primary cells or cell lines. Crystal-grade polystyrene modified by proprietary vacuum-gas plasma treatment process.
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384-well microplate black/clear, round bottom, ultra-low attachment, spheroid, Corning®
Supplier: Corning
Ultra-Low Attachment microplates feature a covalently bound hydrogel layer that effectively inhibits cellular attachment.
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96-well solid black and white polystyrene microplates, Corning®
Supplier: Corning
These 96-well solid black and white polystyrene microplates are designed to reduce well-to-well cross-talk.
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96-well polyvinyl chloride (PVC) microplates
Supplier: Corning
Not treated PVC microplates are economical microplates for solution-based assays, serial dilutions, and general storage applications.
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Corning® closed system cell cubes
Supplier: Corning
Our new offering of CellCube 10, 25, 100 modules, circulation loops, and connectors allows for easy adherent cell scale-up that integrate seamlessly with AseptiQuik® and MPC connectors.
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Plates, poly-D-lysine coated, Nunc™
Supplier: Thermo Fisher Scientific
PS, ready to use plates pre-coated with poly-D-lysine, with lid.
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384-well plates, fibronectin coated, Corning®
Supplier: Corning
PS, fibronectin coated, with lid. Flat bottomed plates suitable for high throughput applications.
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Corning® 1536 well cyclic olefin copolymer (COC) microplate
Supplier: Corning
Cyclic olefin copolymer (COC). Superior flatness of the plates minimises variability within a plate and between plates. The barcoded plates come with with raised well bottoms for higher sensitivity.
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Spheroid microplates, Ultra-Low Attachment surface, Corning®
Supplier: Corning
PS, black opaque microplate with optically clear bottom, with lid. The Ultra-Low Attachment surface is a covalently bound hydrogel layer that is hydrophilic and neutrally charged. The surface minimises cell attachment, protein absorption, and enzyme activation. It is ideal for culturing stem cells, as it promotes embryoid body formation from ES cells.
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384-well clear polystyrene microplates, Corning®
Supplier: Corning
PS, flat bottom.
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384-well high content screening microplates with glass bottom
Supplier: Corning
High optical quality, glass bottom black microplates are ideal for performing high-content cell-based assays using imaging systems. The glass bottom provides a flat and optically clear surface that reduces autofocus time, increases throughput, and is ideal for cell growth.