FERC20040

Thermo Scientific™ EZ-Link™ TFP Ester-PEG12-DBCO

Manufacturer: Thermo Scientific™

Select a Size

Pack Size SKU Availability Price
Each of 1 FERC20040-Each-of-1 In Stock ₹ 22,373.94

FERC20040 - Each of 1

₹ 22,373.94

In Stock

Quantity

1

Base Price: ₹ 22,373.94

GST (18%): ₹ 4,027.309

Total Price: ₹ 26,401.249

Chemical Reactivity

Amine-Azide

Description

TFP Ester-PEG12-DBCO

PEGylated

Yes

Content And Storage

Upon receipt store desiccated at -20°C.

Shipping Condition

Wet Ice

Labeling Method

Chemical Labeling

Reactive Moiety

TFP Ester, DBCO

Form

Liquid

Solubility

DMF, DMSO

Water Soluble

No

Cleavable

No

Molecular Weight (g/mol)

1067.12

Spacer Arm Length

46.3 Å

Cell Permeability

Not determined

Product Line

EZ-Link™

Crosslinker Type

Heterobifunctional

Spacer

Long (>30 Å)

Quantity

25 mg

Format

Standard

Product Type

Crosslinker

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Description

  • A heterobifunctional crosslinker that contains an amine reactive tetrafluorophenyl (TFP) and a dibenzylcyclooctyne (DBCO) with a water solubilizing long PEG12 spacer in between the two groups This crosslinker can be used to label any primary amine containing molecule such as a protein to biomolecule with a distantly attached DBCO group Once a protein or (bio)molecule is DBCO labeled, it can undergo a copper-free azide-alkyne cycloaddition reaction to form a stable triazole linkage with an azide labeled coupling partner Can be used to create diverse conjugates with the biorthogonal coupling between an alkyne and azide (supplied separately) The coupling or crosslinking procedure is typically done in two steps: First, a protein or amine containing molecule is labeled with a DBCO group and excess crosslinker is removed Second, an azide containing moiety (prepared independently) is introduced into the same system as the DBCO moiety Labeling occurs under biological conditions without the introduction of any additional reagents such as a copper catalyst Reagent readily dissolves in water-miscible solvents for dilution into aqueous reaction mixtures TFP esters are more hydrolytically stable than NHS esters