Fibrinogen From Human Plasma, Alexa Fluor™ 546 Conjugate
Fibrinogen From Human Plasma, Alexa Fluor™ 546 Conjugate
Invitrogen™

Fibrinogen From Human Plasma, Alexa Fluor™ 546 Conjugate

Molecular Probes™ fibrinogen conjugates are prepared by attaching fluorescent dye molecules to purified human fibrinogen (approximately 15 dye molecules forRead more
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Catalog number F13192
Price (USD)/ Each
351.00
Add to cart
Price (USD)/ Each
351.00
Add to cart
Molecular Probes™ fibrinogen conjugates are prepared by attaching fluorescent dye molecules to purified human fibrinogen (approximately 15 dye molecules for each fibrinogen molecule), purifying the conjugate to remove unreacted dye, and then lyophilizing for storage.

Fluorescently labeled fibrinogen has proven to be a valuable tool for investigating platelet activation and subsequent fibrinogen binding. For instance, fluorescein-labeled fibrinogen has been used to detect fibrinogen bound to activated platelets by flow cytometry.

Human Fibrinogen Conjugate Specifications:
• Label (Ex/Em): Alexa Fluor™ 546 (∼558/573 nm)
• Spectrally similar to tetramethylrhodamine (TMR), but is brighter and more photostable
• Lyophilized product can be dissolved in buffer (e.g., sodium bicarbonate, pH 8.3) for use
• Fluorescence is typically detected using fluorescence microscopy or flow cytometry


Find More Probes for Cell Adhesion and Receptor Binding
Review Probes for Cell Adhesion, Chemotaxis, Multidrug Resistance and Glutathione—Section 15.6 and Probes for Following Receptor Binding and Phagocytosis—Section 16.1 in the Molecular Probes™ Handbook for more information on these probes.

For Research Use Only. Not for human or animal therapeutic or diagnostic use.
For Research Use Only. Not for use in diagnostic procedures.
Specifications
Quantity5 mg
ConjugateAlexa Fluor 546
SpeciesHuman
Label TypeAlexa Fluor Dyes
Shipping ConditionRoom Temperature
FormLyophilized
Protein SubtypeFibrinogen
Product LineAlexa Fluor™
Unit SizeEach
Contents & Storage
Store in freezer (-5 to -30°C) and protect from light.