Fc epsilon R1 alpha / CF594 /
Product Details
Description | Rabbit polyclonal antibody to FCER1A - | |
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Conjugate | CF594 | |
Clone | ||
Target Species | Human, Mouse | |
Applications | IF, ICC | |
Supplier | Biorbyt | |
Catalog # | Sign in to view product details, citations, and spectra | |
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Price | ||
Antigen | ||
Host | ||
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About Fc epsilon R1 alpha
The immunoglobulin epsilon receptor (IgE receptor) is the initiator of the allergic response. When two or more high-affinity IgE receptors are brought together by allergen-bound IgE molecules, mediators such as histamine that are responsible for allergy symptoms are released. This receptor is comprised of an alpha subunit, a beta subunit, and two gamma subunits. The protein encoded by this gene represents the alpha subunit. [provided by RefSeq, Aug 2011]
The immunoglobulin epsilon receptor (IgE receptor) is the initiator of the allergic response. When two or more high-affinity IgE receptors are brought together by allergen-bound IgE molecules, mediators such as histamine that are responsible for allergy symptoms are released. This receptor is comprised of an alpha subunit, a beta subunit, and two gamma subunits. The protein encoded by this gene represents the alpha subunit. [provided by RefSeq, Aug 2011]
About CF594
CF®594 from Biotium is a fluorophore with an excitation peak at 593 nm and an emission peak at 614 nm. It can be useful in both fluorescence microscopy and flow cytometry. It is spectrally similar to Alexa Fluor™ 594, DyLight™ 594 and Texas Red. However, in flow cytometry, PE-CF®594 and PE-Dazzle 594 are superior alternatives. In microscopy, CF®594 has been validated in STED and 2-Photon microscopy.
CF®594 from Biotium is a fluorophore with an excitation peak at 593 nm and an emission peak at 614 nm. It can be useful in both fluorescence microscopy and flow cytometry. It is spectrally similar to Alexa Fluor™ 594, DyLight™ 594 and Texas Red. However, in flow cytometry, PE-CF®594 and PE-Dazzle 594 are superior alternatives. In microscopy, CF®594 has been validated in STED and 2-Photon microscopy.
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