Goat IgG anti-Alpaca IgG (H+L)-Alexa Fluor 488, MinX Bo,Hu,Ms,Rb,Rt
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Overview
SKU 128-545-160 Host Species IgG Form Species Reactivity Specificity Isotype Clonality (Mono-/Polyclonal) Application ELISA, Flow Cytometry, Immunocytochemistry, Immunofluorescence, Immunohistochemistry (frozen sections), Immunohistochemistry (IHC), Immunohistochemistry (Paraffin-embedded Sections)
Conjugation Maximum Absorption Maximum Emission No Cross-reactivity (MinX) with Dilution Format 0.05% NaN3, 15 mg/ml BSA (IgG- and Protease-Free), 250 mM NaCl, affinity purified by antigen-specific affinity chromatography, in 10 mM PBS (pH 7.6), lyophilisate
Application Note Intended Use Product line / Topic Manufacturer / Brand - Datasheets and Downloads
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Additional Product Information
Whole IgG antibodies are isolated as intact molecules from antisera by immunoaffinity chromatography. They have an Fc portion and two antigen binding Fab portions joined together by disulfide bonds and therefore they are divalent. The average molecular weight is reported to be about 160 kDa. The whole IgG form of antibodies is suitable for the majority of immunodetection procedures and is the most cost effective.Based on immunoelectrophoresis and/or ELISA, the antibody reacts with whole molecule alpaca IgG, and with llama IgG. It also reacts with light chains of other alpaca immunoglobulins. No antibody was detected against non-immunoglobulin serum proteins. The antibody has been tested by ELISA and/or solid-phase adsorbed to ensure minimal cross-reaction with bovine, human, mouse, rabbit and rat serum proteins, but it may cross-react with immunoglobulins from other species.
Conjugate
Alexa Fluor 488-conjugated antibodies absorb light maximally at 493 nm and fluoresce with a peak around 519 nm. In aqueous mounting media they are brighter than FITC, Cy2, and DyLight 488. Alexa Fluor 488 conjugates are recommended for maximum sensitivity for all immunofluorescence procedures requiring a green-fluorescing dye, except for protocols that include mounting in plastic mounting media.