CD24 NovaFluor Blue 725 (SN3 A5-2H10, Mouse) - Reactivity: Human
Product Details
| Description | CD24 Monoclonal Antibody (eBioSN3 (SN3 A5-2H10)), NovaFluor Blue 725, eBioscience | |
|---|---|---|
| Conjugate | NovaFluor Blue 725 | |
| Clone | SN3 A5-2H10 | |
| Target Species | Human | |
| Applications | FC | |
| Supplier | Thermo Fisher Scientific | |
| Catalog # | Sign in to view product details, citations, and spectra | |
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About CD24
This gene encodes a sialoglycoprotein that is expressed on mature granulocytes and B cells and modulates growth and differentiation signals to these cells. The precursor protein is cleaved to a short 32 amino acid mature peptide which is anchored via a glycosyl phosphatidylinositol (GPI) link to the cell surface. This gene was missing from previous genome assemblies, but is properly located on chromosome 6. Non-transcribed pseudogenes have been designated on chromosomes 1, 15, 20, and Y. Alternative splicing results in multiple transcript variants. [provided by RefSeq, Apr 2014]
This gene encodes a sialoglycoprotein that is expressed on mature granulocytes and B cells and modulates growth and differentiation signals to these cells. The precursor protein is cleaved to a short 32 amino acid mature peptide which is anchored via a glycosyl phosphatidylinositol (GPI) link to the cell surface. This gene was missing from previous genome assemblies, but is properly located on chromosome 6. Non-transcribed pseudogenes have been designated on chromosomes 1, 15, 20, and Y. Alternative splicing results in multiple transcript variants. [provided by RefSeq, Apr 2014]
About NovaFluor Blue 725
NovaFluor Blue 725 has an excitation peak at 492 nm and an emission peak at 725 nm. NovaFluor conjugates are based on Phiton™ technology utilizing novel nucleic acid dye structures that allow for engineered fluorescent signatures with consideration for spillover and spread impacts.
NovaFluor Blue 725 has an excitation peak at 492 nm and an emission peak at 725 nm. NovaFluor conjugates are based on Phiton™ technology utilizing novel nucleic acid dye structures that allow for engineered fluorescent signatures with consideration for spillover and spread impacts.
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