Hledali jste: Destičky pro bunečné kultury
Regardless of the biological cell type, cell culture treated 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. Tissue Culture-Treated is used with other serum-supplemented media to culture anchorage-dependent mammalian cells. Using any size cell culture plate yields consistent and reproducible results.
Mikrodestičky 96-jamkové pro buněčné kultury, BRANDplates®
Supplier: Brand
PS, pevné nebo s průsvitnou základnou. Destičky jsou k dispozici v různých tvarech jamek (kruhové U-dno, kónické V-dno, ploché F dno nebo ploché C dno se zaoblenými hranami), v různých barvách a s výběrem povrchů ošetřených buněčnými kulturami.
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384-jamkové (HTS) mikrodestičky pro buněčné kultury, BRANDplates®
Supplier: Brand
PS, standardní nebo s průhlednou základnou. Tyto destičky s plochým dnem jsou k dispozici v různých barvách a ve standardním nebo průhledném formátu.
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Destičky pro buněčné kultury, Nunc™ Multidish
Supplier: Thermo Fisher Scientific
PS, sterile, with lid. Useful in all areas of cell culture, including scale up and cloning.
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VWR®, Destičky pro tkáňové kultury, 3D scaffold
Supplier: VWR Collection
Destičky pro tkáňové kultury VWR® 3D jsou vyrobeny z polystyrenu (GPPS) s polystyrenovou oporou buněk a umožňují nejvyšší možnou simulaci trojrozměrného prostředí tkáně v podmínkách in vivo, poskytují tak ideální prostředí pro přirozenou interakci a tkáňový růst, maximalizují kultivační plochu a poskytují větší výtěžky.
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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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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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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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VWR® Large Volume Cell Culture Plates
Supplier: VWR Collection
6-well, round well plates for suspension cell culture.
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Cell culture multiwell plates, CELLSTAR®
Supplier: Greiner Bio-One
PS, with lid, sterile. Cell culture multiwell plates are available either with a physically treated surface (for adherent cell cultures) or with a hydrophobic surface (for suspension cultures and hybridoma cells). All plates are certified free of RNase, DNase and human DNA, are non-pyrogenic and non-cytotoxic.
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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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VWR®, Misky kultivační, vícejamkové
Supplier: VWR Collection
VWR® multiwell cell culture plates are available with a choice of surface treatments.
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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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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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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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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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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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96-Well, Black Plates
Supplier: Abcam
Non-pyrogenic, polystyrene microplates (black) with standard solid flat bottom.
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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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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, 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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Fibronectin 96-well clear flat bottom TC-treated microplates, Corning® BioCoat®
Supplier: Corning
Corning® BioCoat®, Cell culture plate, 96-well plate
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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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Multiwell plates, Poly-L-ornithine and laminin coated, Corning® BioCoat™
Supplier: Corning
Corning® BioCoat®, Cell culture plate, 6-well poly-L-ornithine/laminin coated microplates
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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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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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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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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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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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Collagen IV coated plates, Corning® BioCoat®
Supplier: Corning
Type IV Collagen is a ubiquitous component in basement membranes and provides the major structural support for this matrix. When the Collagen IV meshwork is assembled, it provides a scaffold for the assembly of other basement membrane components through interactions with laminin, entactin/nidogen, and heparan sulfate proteoglycan. Collagen IV is useful as a substrate for growth of epithelial, endothelial, muscle, and nerve cells. Collagen plays a role in the regulation of cell growth, differentiation and adhesion, as well as tissue formation