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.
Microplates, 384-well
Supplier: Greiner Bio-One
PS. With the exception of the Small Volume™, all 384-well PS microplates have rounded square wells, which combine the advantages of flexible working volume (10 to 130 µl) with reduced wicking and bubbling. Small Volume™ plates have round wells with a conical geometry, which allows a working volume of just 4 to 25 µl. All plates are supplied without lid, except for some sterile formats.
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PCR plates, 384-well, Thermo-Fast® 384
Supplier: Thermo Fisher Scientific
PP. Designed for high throughput PCR, this 384-well plate is compatible with the majority of 384 block PCR and sequencing instruments. The full skirt and rigid plate deck minimise distortion during PCR making it suitable for use with robotic systems.
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Angiogenesis system, Corning® BioCoat®
Supplier: Corning
The Corning® BioCoat® Angiogenesis systems facilitate investigation of compound effects on endothelial cell invasion, migration, and tubulogenesis. The availability of these standardised assays has facilitated a better understanding of the molecular mechanism of angiogenesis and simplified the routine use of cell based assays for screening of anti- and pro-angiogenic compounds.
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HTS 96-well multiwell permeable support system, Corning® FluoroBlok™
Supplier: Corning
Corning® FluoroBlok™ HTS 96-multiwell insert system is a cell culture assay platform designed for automation. The one-piece insert housing and fluorescence-blocking microporous membrane (available in 3,0 and 8,0 μm pore sizes) enables increased efficiency, productivity and throughput in the drug discovery process. The receiver plate design minimises crosstalk between wells.
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96 square well, flat bottom plate, Falcon®
Supplier: Corning
Sterile flat-bottom microplate with lid, made from crystal-grade virgin PS.
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96-Well T-cell activation plates, Corning® BioCoat™
Supplier: Corning
Corning BioCoat T-Cell activation plates are precoated with high quality BD Pharmingen™ CD3 antibodies. Available for use with mouse or human T-cells, Corning BioCoat T-Cell activation plates offer lot-to-lot consistency and come individually packaged with lids for ease of use.
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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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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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Filter plates, 384-well, 100 µl, AcroPrep™
Supplier: Cytiva (Formerly Pall Lab)
Ideal for high throughput sample preparation and detection procedures. AcroPrep™ filter plates are constructed from chemically-resistant, biologically-inert PP with a clear PS lid and are available in a variety of membrane configurations to meet the requirements of numerous applications.
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PCR detection plates, 96-well, semi-skirted, flat deck, Thermo-Fast®
Supplier: Thermo Fisher Scientific
PP. The PCR detection plate features a flat deck for improved handling and sealing.
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Microplates, 96-well, non binding
Supplier: Greiner Bio-One
Characterised by low protein, DNA, RNA, and peptide binding properties, the non binding microplate surface significantly increases assay sensitivity by reducing background and improving signal-to-noise ratio.
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Corning® FluoroBlok™ 24-multiwell insert systems, PET membrane
Supplier: Corning
Permit real-time analysis of cell culture compound permeability (1 µm), cell migration (3 µm or 8 µm), and invasion (8 µm).
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HTS 24-well Multiwell Permeable Support System, Corning® FluoroBlok™
Supplier: Corning
The Corning® FluoroBlok™ HTS 24-multiwell insert system contains an automation-friendly, 24-multiwell cell culture membrane insert suitable for both manual and robotic screening of cells or compounds.
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HTS 24-multiwell insert system, Falcon®
Supplier: Corning
The Falcon® HTS 24-multiwell insert system is designed to automate many commonly used membrane-based cell assays and increase the productivity and throughput of these assays in the drug discovery process. Available in a choice of membrane pore sizes (1, 3 and 8 µm), 24-multiwell inserts have been successfully used for a variety of applications including permeability studies for oral bioavailability and absorption studies (Caco-2 cells), chemotaxis, cell migration and invasion assays.
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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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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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