AF 594 DBCO: Fluorescent Dye

(DB-410309)

AF 594 DBCO is a bright orange-fluorescent dye that is structurally identical to Alexa Fluor 594. With its high photostability and pH resistance, it has become one of the most widely used fluorophores in life sciences. Its hydrophilic nature makes it an ideal choice for labeling sensitive proteins.


The DBCO is one of the most reactive cycloalkynes for copper-free click reaction and allows fluorescent labeling of azide-containing biomolecules inside living cells or whole organisms.

Package size

Key Parameters: High fluorescence quantum yield with lower costs

DBCO: Higher rate of interaction with azides inside a cell

Applications: Confocal Microscopy, Super Resolution Microscopy, Flow Cytometry (FACS), cell cultures and tissue labeling

Lower Cost Alternative: Same Spectral Properties & Performance – Works exactly like Alexa Fluor 594 with friendly price.

Complete Compatibility – Can be used in any existing protocol that uses Alexa Fluor 594

Pricing

Cat. no.

Quantity

Price

Availibility

DB-410309-1MG

1 mg

105 EUR



In stock

DB-410309-5MG

5 mg

340 EUR



In stock

DB-410309-10MG

10 mg

600 EUR



In stock

DB-410309-25MG

25 mg

1095 EUR




In stock

DB-410309-50MG

50 mg

1420 EUR




In stock

DB-410309-100MG

100 mg

1980 EUR



In stock

General Information

Shipping

Storage

Quality Control

Room Temperature

Up to 24 months in -20 ℃

HPLC (98 %+ purity)

Optical Data of AF 594 DBCO

Name

Excitation (nm)

Emission (nm)

Excitation coeficient (ε)

MW (g/mol)

Formula

Formula

AF 594 DBCO

590

618

105 000

1183.49


C65H78N6O11S2


C50H67N5O10S2

AF 594 DBCO: Absorption and emission spectra

Absorption and emission spectra of AF 594:The absorption and emission spectra of AF 594 DBCO visualized. The absorption peak at 590 nm ensures efficient excitation, while the emission peak at 618 nm provides strong fluorescence for high-sensitivity detection. Thanks to its high photostability, excellent pH resistance, and superior brightness, AF 594 is ideal for flow cytometry, confocal microscopy, and labeling of cell cultures and tissues.

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