Siglec-9 / Alexa Fluor 350 /
Product Details
Conjugate | Alexa Fluor 350 | |
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Clone | ||
Target Species | Human | |
Applications | ||
Supplier | Bioss | |
Catalog # | Sign in to view product details, citations, and spectra | |
Size | ||
Price | ||
Antigen | ||
Host | ||
Isotype |
About Siglec-9
Predicted to enable monosaccharide binding activity and sialic acid binding activity. Predicted to be involved in cell adhesion. Predicted to act upstream of or within negative regulation of inflammatory response and negative regulation of phagocytosis, engulfment. Predicted to be located in external side of plasma membrane. Predicted to be active in plasma membrane. [provided by Alliance of Genome Resources, Apr 2022]
Predicted to enable monosaccharide binding activity and sialic acid binding activity. Predicted to be involved in cell adhesion. Predicted to act upstream of or within negative regulation of inflammatory response and negative regulation of phagocytosis, engulfment. Predicted to be located in external side of plasma membrane. Predicted to be active in plasma membrane. [provided by Alliance of Genome Resources, Apr 2022]
About Alexa Fluor 350
Alexa Fluor™ 350 (AF350, Alexa 350) has an excitation peak at 346 nm and an emission peak at 442 nm, and is spectrally similar in size, brightness and application to AMCA, DyLight™ 350 and CF®350. Alexa 350 is most commonly used in flow cytometery and fluorescence microscopy applications.
Alexa Fluor™ 350 (AF350, Alexa 350) has an excitation peak at 346 nm and an emission peak at 442 nm, and is spectrally similar in size, brightness and application to AMCA, DyLight™ 350 and CF®350. Alexa 350 is most commonly used in flow cytometery and fluorescence microscopy applications.
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