AminoLink™ Plus Coupling Resin
AminoLink™ Plus Coupling Resin
Thermo Scientific™

AminoLink™ Plus Coupling Resin

Thermo Scientific AminoLink Plus Coupling Resin uses aldehyde-activated agarose beads for high-yield covalent coupling of antibodies (proteins) via primary aminesRead more
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Catalog NumberFormulationQuantity
20501Aldehyde-activated 4% beaded agarose, slurried in water with sodium azide10 mL
20505Aldehyde-activated 4% beaded agarose, slurried in water with sodium azide50 mL
Catalog number 20501
Price (USD)
186.00
Each
Add to cart
Formulation:
Aldehyde-activated 4% beaded agarose, slurried in water with sodium azide
Quantity:
10 mL
Request bulk or custom format
Price (USD)
186.00
Each
Add to cart
Thermo Scientific AminoLink Plus Coupling Resin uses aldehyde-activated agarose beads for high-yield covalent coupling of antibodies (proteins) via primary amines to prepare columns for affinity purification.

Features of AminoLink Plus Coupling Resin:

AminoLink Plus CouplingResin—aldehyde-activated crosslinked 4% beaded agarose
Ideal for antibodies and other proteins— immobilize molecules via primary amines (-NH2)
Flexible coupling conditions—efficient (>85%) coupling over a wide range of pH (4-10) and buffer conditions (PBS or other non-amine buffer with or without organic solvent); regular (PBS, pH 7.2) and enhanced (citrate-carbonate, pH 10) coupling protocols provided
Stable, permanent immobilization—Coupling reaction esults in stable, leak-resistant secondary amine bond between resin and ligand
Better than immobilization to CNBr-activated agarose—bond is more stable and uncharged, resulting in less nonspecific binding in affinity purification procedures
Versatile and reusable—prepared affinity resin is adaptable to column and batch affinity techniques and the resin is reusable for typical applications based on protein binding interactions

AminoLink Plus Resin is beaded agarose support that has been modified to contain aldehyde groups. Antibodies, other proteins, or any molecules with primary amines can be conjugated to the resin by an optimized form of reductive amination. Once an antibody or other ligand is immobilized, the prepared affinity resin can be used for a variety of affinity purification methods involving batch or column chromatography. The resin and linkage are stable in binding and elution conditions typically used in affinity chromatography, enabling prepared resin to be used for at least 10 rounds of affinity purification.

Specifications:
Product Details:
The AminoLink Plus Coupling Reaction involves spontaneous formation of Schiff base bonds between aldehydes (on the support) and amines (on the ligand) and their subsequent stabilization by incubation with a mild reductant (sodium cyanoborohydride). The entire coupling reaction, called reductive amination, occurs in 4 to 6 hours in simple non-amine buffers such as PBS. Coupling efficiency with antibodies and typical proteins is generally greater than 85%, resulting in 1 to 20 mg of immobilized protein per milliliter of agarose resin.

Coupling efficiencies with AminoLink Plus Coupling Resin exceed those obtained with cyanogen bromide (CNBr) activated supports. Furthermore, AminoLink Plus Chemistry forms a bond with the amine-containing ligand that is more stable than with the CNBr method and is uncharged. These properties provide a more leak-resistant immobilization and lower nonspecific binding when used for affinity purification procedures.

Related Products
AminoLink™ Plus Immobilization Kit, 2 mL
AminoLink™ Plus Micro Immobilization Kit, 0.1 mL
For Research Use Only. Not for use in diagnostic procedures.
Specifications
FormulationAldehyde-activated 4% beaded agarose, slurried in water with sodium azide
FormLiquid
Product LineAminoLink™
Quantity10 mL
TargetAntibody, Proteins through Primary Amine
TypeResin
Stationary PhaseAldehyde
FormatBottle
Column TypeAffinity, Agarose Resin
Unit SizeEach
Contents & Storage
Store at 4°C.

Frequently asked questions (FAQs)

What is the binding capacity of the AminoLink Coupling Resin or aminoLink Plus Resin?

AminoLink Coupling Resin can bind approximately 10 mg of IgG/mL of resin bed, while AminoLink Plus Resin can bind up to 15-20 mg of IgG/mL of resin bed. The upper limit for binding peptides is approximately 1 mg/mL of resin for both support types.

Find additional tips, troubleshooting help, and resources within our Protein Purification and Isolation Support Center.

What are the differences between the two supports for the AminoLink Plus Resin?

The AminoLink Plus Resin uses a type of agarose that has better flow properties, which may shorten the time needed for drip-column methods. It is also activated at a higher level, allowing greater ligand to be immobilized.

Find additional tips, troubleshooting help, and resources within our Protein Purification and Isolation Support Center.

My ligand is not soluble in the coupling buffer when using the AminoLink Coupling Resins or Kits. What can I do?

Coupling reactions with AminoLink Resins are compatible with 3-4 M fresh urea or guanidine. (However, old solutions of urea may contain ammonia, which will interfere with ligand immobilization.) Alternatively, dissolve the peptide in 100% DMSO. Add the peptide in DMSO to coupling buffer so that the DMSO does not exceed 20% of the final solution.

Find additional tips, troubleshooting help, and resources within our Protein Purification and Isolation Support Center.

How many purifications can be performed using the same AminoLink or AminoLink Plus Column?

Columns can be reused at least 10 times without loss of activity.

Find additional tips, troubleshooting help, and resources within our Protein Purification and Isolation Support Center.

How long will the coupling reaction take when using the AminoLink Resins and Kits?

The immobilizatoin reaction takes six hours; the entire procedure may require seven to eight hours. This time can be decreased if the high pH protocol for AminoLink Plus Resin is used.

Find additional tips, troubleshooting help, and resources within our Protein Purification and Isolation Support Center.