You searched for: Microplates
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.
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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Multiscreen® 96 Well Plate, PTFE Membrane
Supplier: Merck
The MultiScreen® deep well solvinert filter plate is intended for a wide range of applications including total drug analysis, bead cleavage (solid-phase combinatorial chemistry and peptide synthesis), and sample preparation before high-performance liquid chromatography (HPLC)/ultraviolet (UV) and liquid chromatography-tandem mass spectrometry (LC-MS/MS). This filter plate is fully automation compatible.
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Fibronectin 96-well clear flat bottom TC-treated microplates, Corning® BioCoat®
Supplier: Corning
Cell Culture Plate, 96-well plates
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Cell culture plates, 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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Collagen I-coated microplates, Corning® BioCoat®
Supplier: Corning
Collagen I, found in most tissues and organs, is most plentiful in dermis, tendon, and bone. It is an integral part of the framework that holds cells and tissues together and has been recognized as a useful matrix for improving cell culture. in vitro use of collagen can exert effects on the adherence, morphology, growth, migration, and differentiation of a variety of cell types.
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Cell culture microplates, cell-repellent surface, 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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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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Gelatin microplates, Corning® BioCoat®
Supplier: Corning
PS coated with porcine gelatin. Corning® BioCoat™ gelatin provides an attachment and growth promoting substrate for the culture of a variety of cell types. Gelatin is commonly used in the culture of normal and transfected cell types, including vascular endothelial, muscle, embryonic stem (ES) and F9 teratocarcinoma cells.
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Pierce™ Polystyrene Strip Plates, 8-Well, Corner Notch
Supplier: Thermo Fisher Scientific
PS, high antibody-binding 96-well microplate with individual 8-well strips in the plate frame for immunoassay applications.
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Microplates, NeutrAvidin™ coated, 96- and 384- well, Pierce™
Supplier: Thermo Fisher Scientific
PS, NeutrAvidin™ coated plates for binding biotinylated antibodies or probes for ELISA and other target-specific assays.
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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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White microplates for luminescence applications
Supplier: Thermo Fisher Scientific
Microlite™ microplates are densely pigmented to minimise crosstalk and to provide high reflectivity. These characteristics are ideal for intense luminescent reactions where light piping may be a concern or minimal luminescence assays where even a minute amount of light could affect results.
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Clear bottom, black and white, polystyrene microplates, 384-well, Corning®
Supplier: Corning
PS, flat bottom. Suitable for fluorescent and luminescent assays using either top or bottom detection plate readers.
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Microplates, copper coated, 96-well, Pierce™
Supplier: Thermo Fisher Scientific
Pierce Copper coated plates are ideal for analysing polyhistidine-tagged fusion proteins by ELISA-based methods. Proteins that contain a succession of several histidine residues at the amino or carboxyl terminus have a strong binding affinity for metals such as copper.
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96-Well high content screening microplates with film bottom, Corning®
Supplier: Corning
With an ultraclear film bottom and excellent flatness (whole plate and intra-well), these microplates are ideal for high resolution cellular imaging applications.
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Microplates, 384-well, high content imaging film bottom, Corning®
Supplier: Corning
With an ultraclear film bottom and excellent flatness (whole plate and intra-well), these microplates are ideal for high resolution cellular imaging applications.
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Microplates, 96 well, flat bottom
Supplier: Anicrin
HTS microplate, No. of wells: 96, Flat bottom, Clear
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Immunoassay microplates, Protein L coated plates, Pierce™
Supplier: Thermo Fisher Scientific
Pierce™ Protein L coated plates provide an alternative to direct, passive adsorption methods for immobilising antibodies for ELISA and other plate-based assay techniques.
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Microplates, high content imaging glass bottom, Corning®
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.
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Pierce™ Microplates, Nickel Coated, 96 Well
Supplier: Thermo Fisher Scientific
These Ni(2+) chelate-coated plates are ideal for analysing polyhistidine-tagged fusion proteins by ELISA-based methods. Proteins that contain a succession of several histidine residues at the amino or carboxyl terminus have a strong binding affinity for metal. Bacterial lysates containing polyhistidine-tagged fusion proteins can be added directly to the plates without the need for blocking. The clear, white or black plates can be used with colorimetric, chemiluminescent or fluorescent detection methods, respectively.
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Microplates, steptavidin coated, high sensitivity, 96-well, Pierce™
Supplier: Thermo Fisher Scientific
PS, streptavidin coated high sensitivity plates maximise capture efficiency of biotinylated probes and control background in assays for low levels of target analyte.
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Poly-D-lysine 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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Storage plates and blocks, 96-well, Corning®
Supplier: Corning
PP, non treated, without lid. Standard and large volume 96-well microplates and storage blocks to meet assay and storage requirements.
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Immunoassay microplates, biotin coated, 96-well strip plates, Pierce™
Supplier: Thermo Fisher Scientific
Biotin coated plates can be used as the basis for a variety of biomolecular assay techniques requiring the immobilisation of probes that are conjugated with streptavidin, avidin, or other biotin-binding proteins.
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Storage blocks, 96-well, ScreenMates
Supplier: THERMO MATRIX TECHNOLOGIES
Deep Well microplate, Non treated, ScreenMates, No. of wells: 96, Well volume: 1 ml, PP, 1,0 ml, U-bottom, Sterile
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Microtitre plates, 96-well, flat bottom
Supplier: Anicrin
HTS Microplate, No. of wells: 96
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384-well microplates, Falcon®
Supplier: Corning
Falcon® 384 microplates are compatible with automation systems and meet standard ANSI/SBS footprint dimensions for microplates.
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Low volume microplates 96-well polystyrene, Corning® Stripwell™
Supplier: Corning
Corning® Stripwell™ microplates may be used in a variety of laboratory assays. The flat bottom strips are designed to easily break apart and are pre-assembled in an ‘egg-crate’ style strip holder that allows everyone well to be positioned back into the microplate once broken.
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Standard polystyrene microplates 96-well, Corning® Stripwell™
Supplier: Corning
Corning® Stripwell™ microplates may be used in a variety of laboratory assays. The flat bottom strips are designed to easily break apart and are pre-assembled in an 'egg-crate' style strip holder that allows each individual well to be positioned back into the microplate once broken.
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384-well microplates, ShallowWell, standard height
Supplier: Thermo Fisher Scientific
These standard height plates are suitable for automation, without the need to make adjustments to robotics, plate readers or liquid handlers.