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The ReadyProbes Hydrophobic Barrier Pap Pen creates a water-repellent barrier when used on a microscope slide or coverslip.
SuperBoost™ EverRed and EverBlue Colorimetric HRP Kits use poly-HRP-mediated tyramide signal deposition for permanent labeling of a target protein in IHC, enabling sensitive and specific colorimetric tissue staining that is wash resistant, water/organic solvent mountable, and archivable.
Gamme de produits | SuperBoost™ |
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Conditions d’expédition | Wet Ice |
For use in immunohistochemistry and immunocytochemistry protocols which require washing to remove non-specific binding. TBS Wash Buffer for IHC/ICC is recommended for eFluor™ Nanocrystal conjugated-antibodies following antibody incubation.
Removes N-linked, simple complex O-linked oligosaccharides from glycoproteins in single reaction.
Designed for use during the heat induced epitope retrieval (HIER) step prior to immunohistochemistry on formalin-fixed paraffin-embedded tissue sections. Used in combination with heat has been shown to restore the antigenicity of proteins modified during the formalin fixation of tissue.
SuperBoost™ tyramide signal amplification is the most sensitive method for detection of low abundant targets in multiplexable fluorescent immunocytochemistry (ICC), immunohistochemistry (IHC ), and in situ hybridization (ISH).
SuperBoost™ tyramide signal amplification is the most sensitive method for detection of low abundant targets in multiplexable fluorescent immunocytochemistry (ICC), immunohistochemistry (IHC ), and in situ hybridization (ISH).
SuperBoost™ tyramide signal amplification is the most sensitive method for detection of low abundant targets in multiplexable fluorescent immunocytochemistry (ICC), immunohistochemistry (IHC ), and in situ hybridization (ISH).
Features poly-HRP-conjugated goat anti-rabbit IgG secondary antibody. Alexa Fluor™ 488 Tyramide SuperBoost™ Kit combine brightness of AlexaFluor dyes with high signal amplification of a poly-HRP-mediated tyramide labeling reaction to produce s
Gamme de produits | SuperBoost™ |
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Conjugué | Alexa Fluor 594 |
Durée de conservation | 6 Months |
Conditions d’expédition | Approved for shipment at Room Temperature or on Wet Ice |
Thermo Fisher Scientific offers a wide variety of bright Alexa Fluor™, Alexa Fluor™ Plus or Biotin XX tyramide conjugates. These tyramide conjugates are used in tyramide signal amplification (TSA), also called catalyzed reporter deposition (CARD).
Clonality | None |
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Quantité | 1 vial, 150 slides |
À utiliser avec (application) | Immunohistochemistry (IHC),Immunofluorescence (IF),Immunocytochemistry (ICC),ISH |
SuperBoost™ tyramide signal amplification is the most sensitive method for detection of low abundant targets in multiplexable fluorescent immunocytochemistry (ICC), immunohistochemistry (IHC ), and in situ hybridization (ISH).
SuperBoost™ tyramide signal amplification is the most sensitive method for detection of low abundant targets in multiplexable fluorescent immunocytochemistry (ICC), immunohistochemistry (IHC ), and in situ hybridization (ISH).
SuperBoost™ tyramide signal amplification is the most sensitive method for detection of low abundant targets in multiplexable fluorescent immunocytochemistry (ICC), immunohistochemistry (IHC ), and in situ hybridization (ISH).
Features poly-HRP-conjugated goat anti-mouse IgG secondary antibody. Alexa Fluor™ 488 Tyramide SuperBoost™ Kit combine brightness of AlexaFluor dyes with high signal amplification of a poly-HRP-mediated tyramide labeling reaction to produce se
Type de produit | Tyramide Kit |
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Gamme de produits | SuperBoost™ |
Conjugué | Alexa Fluor 594 |
Durée de conservation | 6 Months |
Conditions d’expédition | Approved for shipment at Room Temperature or on Wet Ice |
Designed to effectively suppress background fluorescence in live cell assays
Type de produit | Background Suppressor for live cell assays |
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Gamme de produits | BackDrop™ |
À utiliser avec (application) | Microplate Assays |
Contenu et stockage | Store at 2-8°C. DO NOT FREEZE. Protect material from long-term exposure to light. |