Ferritin Light Chain / CF568 / FTL/1387
Product Details
Description | Ferritin, Light Chain Monoclonal Mouse Antibody (FTL/1387) | |
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Conjugate | CF568 | |
Clone | FTL/1387 | |
Target Species | Human | |
Applications | IHC-P, WB | |
Supplier | Biotium | |
Catalog # | Sign in to view product details, citations, and spectra | |
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About Ferritin Light Chain
This gene encodes the light subunit of the ferritin protein. Ferritin is the major intracellular iron storage protein in prokaryotes and eukaryotes. It is composed of 24 subunits of the heavy and light ferritin chains. Variation in ferritin subunit composition may affect the rates of iron uptake and release in different tissues. A major function of ferritin is the storage of iron in a soluble and nontoxic state. Defects in this light chain ferritin gene are associated with several neurodegenerative diseases and hyperferritinemia-cataract syndrome. This gene has multiple pseudogenes. [provided by RefSeq, Jul 2008]
This gene encodes the light subunit of the ferritin protein. Ferritin is the major intracellular iron storage protein in prokaryotes and eukaryotes. It is composed of 24 subunits of the heavy and light ferritin chains. Variation in ferritin subunit composition may affect the rates of iron uptake and release in different tissues. A major function of ferritin is the storage of iron in a soluble and nontoxic state. Defects in this light chain ferritin gene are associated with several neurodegenerative diseases and hyperferritinemia-cataract syndrome. This gene has multiple pseudogenes. [provided by RefSeq, Jul 2008]
About CF568
CF®568 from Biotium is a fluorophore with an excitation peak at 562 nm and an emission peak at 583 nm. It can be useful in both fluorescence microscopy and flow cytometry. It is spectrally similar to Alexa Fluor™ 568 and ATTO 565. However, in flow cytometry, a superior alternative is R-PE. In microscopy, CF®568 is validated in super-resolution imaging by STORM, STED, Structured Illumination (SIM) and TIRF.
CF®568 from Biotium is a fluorophore with an excitation peak at 562 nm and an emission peak at 583 nm. It can be useful in both fluorescence microscopy and flow cytometry. It is spectrally similar to Alexa Fluor™ 568 and ATTO 565. However, in flow cytometry, a superior alternative is R-PE. In microscopy, CF®568 is validated in super-resolution imaging by STORM, STED, Structured Illumination (SIM) and TIRF.
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