C10642

Molecular Probes™ Click-iT™ Plus Alexa Fluor™ 555 Picolyl Azide Toolkit

Manufacturer: Molecular Probes™

Select a Size

Pack Size SKU Availability Price
Each of 1 C10642-Each-of-1 In Stock ₹ 49,967.04

C10642 - Each of 1

₹ 49,967.04

In Stock

Quantity

1

Base Price: ₹ 49,967.04

GST (18%): ₹ 8,994.067

Total Price: ₹ 58,961.107

Product Type

555 Picolyl Azide Toolkit

Content And Storage

1 x 100 μg Alexa Fluor™ dye-picolyl azide1 x 4 mL Click-iT™ reaction buffer1 x 1.5 mL copper (II) sulfate1 x 500 μL copper protectant1 Click-iT™ buffer additiveEach k

Label or Dye

Alexa Fluor 555

Quantity

1 kit

Product Line

Click-iT™

Label Type

Alexa Fluor Dyes

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Description

  • Click-iT™ Plus Alexa Fluor™ picolyl azide toolkits contain everything you need to perform copper-catalyzed click reactions with compounds that are sensitive to copper, while retaining all of the benefits of the standard azide/alkyne click reaction
  • Picolyl azides react efficiently with chelated copper, so free copper in the click reaction can be minimized, protecting against undesired copper side reactions with proteins (e.g., GFP, RPE), nucleic acids (e.g., RNA, oligos), and even small molecules (e.g., phalloidin)
  • Flexible—optimize your own Click–iT™ reaction for the detection or labeling of any alkyne-containing biomolecule in vitro or in cells and tissue samples Bright and sensitive—superior fluorescent Alexa Fluor™ dyes combined with the efficiency of picolyl azide Convenient—contains all the buffers and reagents needed to create the optimal click reaction Each Click-iT™ Plus Picolyl Azide Toolkit includes 100μg of Alexa Fluor™ dye-picolyl azide and all of the reagents required to create a reaction cocktail with the optimal copper and chelate concentration for any click chemistry-based labeling or detection application
  • Guidelines for designing and optimizing the picolyl azide/alkyne click reaction of your choice are provided in the product manual
  • Additionally Click-iT™ Plus picolyl azides offer increased sensitivity and faster reaction times compared to standard azides using identical reaction conditions.