Transparent microplates are designed for specific analytical research and clinical diagnostic assaying. With high throughput, the devices work well with both liquid and dry powder samples. Able to withstand extended low temperature storage or heated for evaporation and sterilization processes, the versatile microtiter plates may also come treated for optimal cell binding and growth to occur. Choose from standard matrix formats and well volumes to fit testing needs.
VWR® Multiwell Cell Culture Plates
Supplier: VWR Collection
VWR® multiwell cell culture plates are available with a choice of surface treatments.
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VWR® Single-Well Cell Culture Plates
Supplier: VWR Collection
Single-well cell culture plates, made from clear PS, are available plasma-treated for consistent cell attachment and growth, or non-treated for use in applications where cell attachment is not desired.
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PCR plate, 96-well, automation compatible, Axygen®
Supplier: Corning
This automation-compatible, polypropylene PCR microplate features a rigid frame with a small split that sustains heat transferring during and post thermal cycling without distorting its shape. The plate also features raised rims around the wells to provide tight sealing to minimise heat evaporation.
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Cell culture plates, 384-well, CELLSTAR®
Supplier: Greiner Bio-One
PS, cell culture-treated, sterile. All plates are certified free of RNase, DNase and human DNA, are non-pyrogenic and non-cytotoxic.
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Amine and Carboxyl Plates, 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.
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Protein coated cell culture plates, CELLCOAT®, collagen type I
Supplier: Greiner Bio-One
PS, coated with rat tail collagen type I. Collagen type I is an extracellular matrix protein, which in vivo influences adhesion, migration and proliferation, amongst other processes. Many otherwise difficult-to-cultivate cells adhere to collagen type I and show positive growth behaviour. For certain cell lines collagen type I also has an influence on differentiation and morphology.
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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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Fibrillar collagen cell culture inserts, Corning® BioCoat®
Supplier: Corning
Corning BioCoat cell culture inserts are pre-coated with extracellular matrix proteins for applications requiring a protein-coated cell surface, such as cell adhesion, growth, invasion, migration and/or differentiation.
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Cell culture plates, 1536-well, CELLSTAR®
Supplier: Greiner Bio-One
PS, cell culture-treated, sterile. All plates are certified free of RNase, DNase and human DNA, are non-pyrogenic and non-cytotoxic.
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Cell culture inserts, fibronectin, Corning® BioCoat™ FluoroBlok™
Supplier: Corning
Corning® BioCoat™ FluoroBlok™ fibronectin-coated cell culture inserts packaged ready to use in 24-well Falcon® companion plates.
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VWR®, Cell Culture Insert Plates, PC
Supplier: VWR Collection
PC, sterile, with lid. These insert plates feature a thin, semi-transparent polycarbonate membrane with pore sizes from 0,1 to 12,0 μm.
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Storage plates, 1536-well, MASTERBLOCK®
Supplier: Greiner Bio-One
PP, without lid. Ideal for high throughput screening applications.
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Storage plates, 384-well, MASTERBLOCK®
Supplier: Greiner Bio-One
PP, without lid. Ideal for compound libraries and sample storage.
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VWR®, Cell Culture Insert Plates, PET
Supplier: VWR Collection
Polyester, sterile, with lid. These insert plates feature a thin, microscopically transparent polyester membrane that is tissue culture-treated for optimal cell attachment and growth.
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VWR® Large Volume Cell Culture Plates
Supplier: VWR Collection
6-well, round well plates for suspension cell culture.
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VWR®, Cell Culture Plates, 3D Scaffold
Supplier: VWR Collection
VWR® 3D scaffold cell culture plates, made of polystyrene (GPPS) with polystyrene polymer scaffold, are able to simulate the three-dimensional structure of cells in animals and the human body to maximum effect, providing an ideal environment for cell interaction, maximising culture area, and improving yield.
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Cell culture plates, 96-well, CELLSTAR®
Supplier: Greiner Bio-One
PS, cell culture-treated, sterile. All plates are certified free of RNase, DNase and human DNA, are non-pyrogenic and non-cytotoxic.
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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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Fibrillar Collagen 24-Well Multiwell Insert System, Corning® BioCoat®
Supplier: Corning
This system is packaged with ready-to-use Falcon® Companion Plates.
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Multiwell plates, Poly-D-lysine/laminin coated, 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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Cellware, collagen Type I, Corning® BioCoat™
Supplier: Corning
These Corning® BioCoat™ Collagen I Cellware consists of a family of collagen-coated cultureware products including inserts, micro and multiwell plates, flasks, coverslips, and culture slides.
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Gelatin plates, Corning® BioCoat®
Supplier: Corning
Corning BioCoat Gelatin cultureware provides an attachment and growth promoting substrate for the culture of a variety of cell types. Gelatin is commonly used in the culture of vascular endothelial cells, muscle, embryonic stem (ES) cells, and F9 teratocarcinoma cells. It is also suitable for promoting adhesion of transfected cell types. Gelatin is a heterogeneous mixture of water-soluble proteins derived through the hydrolysis of Collagen.
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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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Cell culture plates, 96-well, CELLSTAR®
Supplier: Greiner Bio-One
PS, cell culture-treated, sterile. Cell culture treated plates are available with round (U), conical (V) or flat (F) bottom wells. All plates are certified free of RNase, DNase and human DNA, are non-pyrogenic and non-cytotoxic.
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Control cell culture inserts, PET membrane, Corning® BioCoat™
Supplier: Corning
Corning BioCoat cell culture inserts are pre-coated with extracellular matrix proteins for applications requiring a protein-coated cell surface, such as cell adhesion, growth, invasion, migration and/or differentiation.
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Multiwell cell culture plates, CELLSTAR®
Supplier: Greiner Bio-One
These sterile, PS multiwell cell culture plates have a cell-repellent surface to effectively inhibit cell attachment. Achieved through a chemical polymer modification, the surface does not degrade or leach under common cell culture conditions, rendering an ideal substrate for native cell culture experiments.
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Poly-L-lysine-coated plates, Corning® BioCoat®, Corning
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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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-D-lysine plates, 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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Cell culture plates, OneWell Plate™, CELLSTAR®
Supplier: Greiner Bio-One
The CELLSTAR® OneWell Plate™ is designed for use in applications involving the cultivation of large quantities of cells. Made from PS.